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1

Wang, Zhi Jian, Hui Lang y Jia Cao. "Research on Wind Power Industry Development in Xinjiang". Advanced Materials Research 608-609 (diciembre de 2012): 709–12. http://dx.doi.org/10.4028/www.scientific.net/amr.608-609.709.

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This document explains the development of wind power; especially the wind power energy in Xinjiang. At the same time the paper demonstrates the difficulties, wind power technology, Wind power is a fixed tariff and tariff subsidies lag, the grid company lack of acquisition of wind power and the trading system is incomplete and hampered a wide range of consumer satisfaction, which faced in the further development of Wind power industry and finds some factors. The good news is National policy began to tilt to the solar, wind and other clean energy, which is a good opportunity for the wind power industry in Xinjiang.
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2

Cui, Hong Yan. "The Development of the Wind Power Industry in Western Jilin". Applied Mechanics and Materials 672-674 (octubre de 2014): 286–89. http://dx.doi.org/10.4028/www.scientific.net/amm.672-674.286.

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Wind power is very important for low carbon energy strategy. Baicheng city has rich wind energy resources as the regional energy base of national key planning in western Jilin. This paper first analyzes the development situation of the wind power industry in Baicheng. Secondly the main problems of the wind power industry are analyzed, mainly including Lack of comprehensive planning for wind power development, high wind power capacity but low grid electricity, serious phenomenon of abandoning the wind power, lagging supporting power grid construction, and depression of the wind power industry. Finally, the corresponding countermeasures are put forward , including to unify thought and plan overall, to make policy of wind power development, to develop new ways to wind power used, to construct smart power grids and to promote the comprehensive development of wind power industry.
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3

Li, Shuai, Lubing Xie y Xiaoming Rui. "Development and Analysis of the Wind Power Industry in Xinjiang, China". Journal of Management and Sustainability 8, n.º 2 (16 de mayo de 2018): 51. http://dx.doi.org/10.5539/jms.v8n2p51.

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As one of the energy bases of China, Xinjiang Uygur Autonomous Region has participated in a series of developing programs, such as The Western Development (2000), The Belt and the Road (2014), and The Global Energy Internet Strategy (2015), which signify that China places considerable importance to the sustainable development of the energy industry in Xinjiang. As an important part of the energy industry in Xinjiang, the emerging wind power industry in this region has developed rapidly in recent years. However, many problems have emerged, such as the abandoned wind power rationing, which seriously restricts the healthy development of the wind power industry. In this study, we introduce the development of the renewable energy industry and analyze the wind energy resources in Xinjiang. We mainly investigate the development situation and existing problems in the wind power industry. Then we focus on the problem of wind power curtailment, analyze the causes, and propose measures and strategies to alleviate this problem. Our findings will contribute to the sustainable development of the wind power industry in Xinjiang.
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4

Sun, Li, Sheng Yue Hao, Jian Ge Li y Zeng Hong Wu. "Development Status, Restricting Factors and Strategies for China's Wind Power Industry". Advanced Materials Research 953-954 (junio de 2014): 348–52. http://dx.doi.org/10.4028/www.scientific.net/amr.953-954.348.

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The development of new and renewable energy is the key to Chinas future energy strategy. The development of wind energy resources has been drawing our attention because of its unique advantages and it grew rapidly recently. At present, Chinas wind energy industry has come into large-scale stage of rapid development and has made remarkable achievements while it also faces great challenges. Based on the overview of wind energy resources and its development status in China, the problems and restrictive factors of Chinas wind energy industry were analyzed in this paper, and its proper strategies for further wind energy development were discussed also.
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5

Niu, Dong Xiao, Mei Lin, Yong Chang Lao y Yuan Lin Song. "The Research on the Development of Wind Power and Wind Industry in China". Applied Mechanics and Materials 209-211 (octubre de 2012): 1743–47. http://dx.doi.org/10.4028/www.scientific.net/amm.209-211.1743.

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In the past five years, the development of wind power is always beyond expect, and keep the fastest growing energy status in the world. Considering the nuclear risk, government has suspended the audit of all the nuclear power project and conduct security clearance for the facilities of nuclear power. This situation provides wind power with broad developing prospects. In addition to its environment friendly, wind power industry also becomes necessary in economic development, and provides employment opportunities. This paper firstly presented the regional characteristics and season features of the wind energy resources in China and reviewed the national wind power development. This study provided some insights into the supply chain in wind power industry at present. Based on this, bottleneck of wind power development in China is discussed from the policy and technology aspects.
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6

Niyazbekova, Shakizada, Saltanat Yerzhanova, Yuliya Tyurina, Mirlan Abilmazhinov, Кarl Кyazimov y Evgeniya Smernitskaya. "The development of renewable energy and state policy in improving energy efficiency". E3S Web of Conferences 244 (2021): 10059. http://dx.doi.org/10.1051/e3sconf/202124410059.

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This article examines the state policy in the field of electric power industry aimed at increasing energy saving. Taking into account all the pros and cons of classical types of electricity production, more and more attention is paid to new, emerging sources, in particular, biofuels and processing of production and consumption waste. Wind power is an innovation that has received investment for development before, but the previous advanced production has not had much success. Russia and the international community have recognized the advantages of renewable energy sources based on wind over traditional energy sources, and the Russian wind energy industry has become the object of close attention not only of domestic entrepreneurs, but also of foreign companies that consider it as a profitable industry for long-term investment.
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7

Zhou, Xue Song, Hui Min Guo y You Jie Ma. "The Overview of the Development of Wind Energy". Applied Mechanics and Materials 552 (junio de 2014): 107–10. http://dx.doi.org/10.4028/www.scientific.net/amm.552.107.

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In the field of renewable energy, wind energy has one of the best prospects in all industries. It is a kind of clean, practical, economic and environmentally friendly alternative energy. It also has the advantages of high energy converting rate, large industrial scale、high level technology and so on. Thus in recent years, the developing trend of global wind power industry is rapid, and the growth tide of China has been enhanced significantly. This paper discusses the general development of wind power. Based on the overview of the development of wind energy and combined with the current situation of wind power market, the development trends of wind turbine were discussed. It also proposed the problems which were existed in domestic wind power market.
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8

Zhang, Chi y Shu Yu Xia. "The Practice and Enlightenment of the Wind Power Industry in India". Advanced Materials Research 512-515 (mayo de 2012): 794–97. http://dx.doi.org/10.4028/www.scientific.net/amr.512-515.794.

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Energy is an essential part in life. Currently wind power is the most technologically mature industry in new energy industry, possessed with the most mechanized prospect. The development of Indian wind power industry has gained remarkable achievements, with its wind turbines manufacturing capability and total installation capacity ranking front among current undeveloped countries. Power plants can use wind turbines rather than steam to generate electricity. Being in use with a large scale, wind power can have a significant effect on the growing global need for more energy and efforts to stop climate change. Effective government support, active technological research and international development path are the basic motives to promote the prosperity of Indian wind power industry. With reference to experience from India, enforcing planning, regulation and support and cultivating self innovative ability should be direct countermeasures for our own wind power industry development.
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9

Li, Guo Jian y Yan Jun Hu. "Analysis and Discussion of the Influence Factors of the Wind Power". Advanced Materials Research 383-390 (noviembre de 2011): 7595–99. http://dx.doi.org/10.4028/www.scientific.net/amr.383-390.7595.

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Wind as a renewable energy, is typical of clean energy, and wind power generation has good social and environmental benefits, which has developed rapidly in worldwide. In this paper, the problems of China's wind power industry and the world wind power industry experience are discussed. The distribution of resources for wind energy, wind energy resource assessment, monitoring and forecasting system, wind industry, policy influencing factors are detailed analysis, and based on China conditions for its development were discussed.
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10

Zhao, Zhen-Yu, Pan-Hao Wu, Bo Xia y Martin Skitmore. "Development route of the wind power industry in China". Renewable and Sustainable Energy Reviews 34 (junio de 2014): 1–7. http://dx.doi.org/10.1016/j.rser.2014.01.071.

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11

Lubing, Xie, Xiaoming Rui, Xiaozhao Fan y Ruijing Shi. "Coupling of Wind Power Heating with High Energy-Consuming Industries to Increase Wind Power Consumption in Xinjiang, China". Modern Applied Science 12, n.º 1 (21 de diciembre de 2017): 14. http://dx.doi.org/10.5539/mas.v12n1p14.

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Numerous problems have emerged with the rapid development of wind power in Xinjiang. The predominant problem is the inhibition of the healthy development of the wind power industry by wind power curtailment in Xinjiang. In this study, wind power heating and high energy-consuming industries were coupled to increase wind power consumption in Xinjiang on the load side. The feasibility analysis of wind power heating in Dabancheng showed that the heating load characteristics coincide with the wind characteristics and the electric heating technology can fulfill the requirements for wind power heating. A business model innovation achieved a win–win situation. Furthermore, a wind power heating system was designed in Dabancheng, the boiler capacity and the heat storage capacity were calculated, and a heating system model with heat storage technology was established. Wind power heating with heat storage can improve the consumption of wind power and increase the local electric load and system adjustability. Furthermore, heating with curtailed wind power can save 2942 tons of standard coal as well as reduce 5172 tons of CO2, 2.9 tons of SO2, 22 tons of NOX, and 2 tons of soot emissions. Non-grid-connected distributed wind power was applied to the high energy-consuming coal chemical industry to reduce wind power curtailment, expand the consumption market, and reduce pollution. A multifunctional wind-photovoltaic complementary system with hydrogen energy storage coupled with traditional high energy-consuming coal chemical industry was established. The implementation plan using wind and solar energy to produce, store, and apply hydrogen energy was proven beneficial. Wind power consumption was improved on the load side. The wind power curtailment problem was reduced by increasing local load using the curtailed wind power to provide clean heat in Dabancheng and constructing the multifunctional wind–photovoltaic complementary system. This study will contribute to the healthy and sustainable development of the wind power industry in Xinjiang.
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12

Niyazbekova, Shakizada, Luiza Moldashbayeva, Seyit Kerimkhulle, Baldyrgan Jazykbayeva, Ella Beloussova y Buldyryk Suleimenova. "Analysis of the development of renewable energy and state policy in improving energy efficiency". E3S Web of Conferences 258 (2021): 11011. http://dx.doi.org/10.1051/e3sconf/202125811011.

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This article examines the state policy in the field of electric power industry aimed at increasing energy saving. Taking into account all the pros and cons of classical types of electricity production, more and more attention is paid to new, emerging sources, in particular, biofuels and processing of production and consumption waste. Wind power is an innovation that has received investment for development before, but the previous advanced production has not had much success. Russia and the international community have recognized the advantages of renewable energy sources based on wind over traditional energy sources, and the Russian wind energy industry has become the object of close attention not only of domestic entrepreneurs, but also of foreign companies that consider it as a profitable industry for long–term investment.
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13

Vasi, Ion. "Social Movements and Industry Development: The Environmental Movement's Impact on the Wind Energy Industry". Mobilization: An International Quarterly 14, n.º 3 (1 de septiembre de 2009): 315–36. http://dx.doi.org/10.17813/maiq.14.3.j534128155107051.

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This article builds a theoretical framework that highlights the role of social movements in industry emergence and growth. Using insights from the literature on social movement outcomes and industry creation, the article shows that the environmental movement has shaped the development of the wind energy industry at both the national and subnational levels. During the past two decades, wind power has transformed from a small, "alternative" energy industry into a multibillion-dollar global industry that produces electricity for millions of people. Quantitative analysis shows that the wind energy industry grows the fastest in countries and regions that have not only a high density of environmental groups but also good wind potential or a favorable political opportunity structure. Case studies deepen this picture by examining how environmental organizations contribute to the development of the wind energy industry. also like to thank Rory McVeigh and three anonymous reviewers for Mobilization for their suggestions.
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14

Niu, Dong Xiao, Fang Fang, Ying Ying Li y Lei Lei Fan. "A Study on Input-Output Efficiency of the Chinese Wind Power Industry Based on Hierarchy Model". Applied Mechanics and Materials 71-78 (julio de 2011): 2347–51. http://dx.doi.org/10.4028/www.scientific.net/amm.71-78.2347.

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In recent years, wind power is regarded as China's important way of adjustment of energy strategy and development of power mode .To promote the development of the wind power industry, this paper set up the evaluation index system of the input-output efficiency of the Chinese Wind Power industry, and use the Hierarchy Model to evaluation, with the characteristics of wind power industry in our country. Evidence shows: China's wind power industry input-output efficiency of good.
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15

Li, Jin Ying y Hao Zhang. "Analyzing the Wind Power Industry of China Based on SWOT". Advanced Materials Research 953-954 (junio de 2014): 493–96. http://dx.doi.org/10.4028/www.scientific.net/amr.953-954.493.

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Due to the energy supply and demand imbalance and unreasonable energy consumption structure, China should vigorously develop renewable energy. Wind power is important choice. In the past decade, the China wind power industry has developed rapidly. By 2012, the total installed capacity of wind power in China is 75324.2MW. China has become the largest installer of wind power capacity in the world. However, the wind power in also facing many problems. In this paper, analyzes wind power industry’s internal and external environments to identify opportunities, threats, strengths and weaknesses. Finally, put forward an appropriate strategy to promote the healthy and orderly development of the wind power industry.
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16

Chang, Hao, Ji Cheng Liu, Cun Bin Li, Ya Juan Yang y Ye Li. "Analysis of the Wind Power Industry in China Based on the Low-Carbon Economy". Advanced Materials Research 805-806 (septiembre de 2013): 342–46. http://dx.doi.org/10.4028/www.scientific.net/amr.805-806.342.

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As one of the important renewable energy for relieving of the human energy crisis, the exploitation and utilization of wind energy, and the encouragement of wind power industry help to realize the development of low-carbon economy in China. In the past few years, the wind power industry has achieved rapid development which faces a lot of opportunities as well as many challenges in china. Using SWOT analysis method, this paper indicates the advantages and disadvantages, and analyzes the opportunities and challenges. This study not only helps to understand the status of the industry, but also provides valuable information to promote the future development of the wind power industry in China.
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17

Song, Min, Xiao Yu Ji y Yin Lu. "The Agglomeration Effect of Chinese Wind Power Industry and Empirical Study". Applied Mechanics and Materials 587-589 (julio de 2014): 405–8. http://dx.doi.org/10.4028/www.scientific.net/amm.587-589.405.

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Wind power industry development is one focus of clean energy. From the perspective of industrial agglomeration effect, this paper studied the development of Chinese wind power industry chain. The location quotient (LQ) was used to research the wind power industry agglomeration in North China, Northeast China, Northwest China and Jiangsu coastal areas, and it proves that wind power industry agglomeration is existented in the four regions. The concentration ratio (CR) was used to research the market concertration in these regions, and it proves that the different industial agglomeration degree may lead to different characteristics of wind power industry. The result is that we should connect wind power industry chains in China to promote national industrial development, like the power transmission from west to east.
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18

WANG, Lei. "Causes of and Solutions to Overcapacity in the New Energy Industry: Taking Wind Energy and Solar Energy as Examples". Chinese Journal of Urban and Environmental Studies 05, n.º 01 (marzo de 2017): 1750005. http://dx.doi.org/10.1142/s2345748117500051.

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Although overcapacity in equipment manufacturing link of the new energy industry represented by solar and wind energies has been improved in recent years, overcapacity in the power generation and utilization links is still serious. Many policies have been issued to solve this problem, yet their outcomes hardly met the expectations. The low utilization rate of power generation equipment and high curtailment of wind and photovoltaic power further hamper the healthy development of the new energy industry. The author holds that the overcapacity is an inevitable result of the thinking mode and investment mechanism based on the traditional fossil fuel system. Constrained by such an inappropriate development model, many policies failed to thoroughly solve the problems emerging in the development of the new energy industry. Thus, it is necessary to focus on the characteristics of new energies, transform the development path, establish a suitable development and utilization model and an electric system that favors new energy, and break down the institutional and organizational barriers for the healthy development of the new energy industry.
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19

Perminov, Eduard M. "Wind Power: History, State, and Prospects". Vestnik MEI 5, n.º 5 (2020): 11–26. http://dx.doi.org/10.24160/1993-6982-2020-5-11-26.

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Many countries around the world began to actively develop renewable energy after the energy crisis of the mid 1970s, when commercial technologies for its use emerged, and nowadays, progress in this field develops much more rapidly than it was expected a decade ago. Modern technologies of using renewable energy sources (RES) are attractive owing to their advantages: they are widely available and inexhaustible; they feature smaller pollution of the environment; their use helps save traditional nonrenewable fossil energy resources; they involve the use of modern high technologies; in addition, they help create new skilled jobs. Russia, despite its large reserves of oil, gas, and coal, is also interested in using RES as an important means of diversifying the country's fuel and energy balance, energy saving, and improving energy security and efficiency with centralized and decentralized supply of power to all regions of the country. This is especially important for regions that face big problems with ensuring reliable and high-quality supply of power. One of the most important areas of renewable energy is wind energy; according to different estimates, it can provide up to 50% or more of the future energy consumption. An attempt is made to estimate the history, state, and prospects for development of the world and domestic wind power industry. The development stages and the role of domestic and industry science, and also the possibilities of the domestic production facilities and ways of improving it are shown. In the course of restructuring and reorganizing the domestic economy, research and development structures, the domestic industry constructing power machinery and equipment, radio electronics, instrument making, and other industries that form the basis for RES and, in particular, wind power, were destroyed to a significant extent. The potential of wind energy, as well as that of other RES that are "not traditional" for the Russian energy sector, has not been fully employed as yet, although in principle, they can solve many energy problems. This is also due to the fact that the current price level in the wholesale electricity market is lower than the net cost of electricity generated by means of RES. This is especially important in solving matters concerned with arrangement of decentralized power supply in Russia, with its vast territory, poorly developed infrastructure, and the world's harshest climate, in which, according to various estimates, from 50 to 70% of the territory is not covered by reliable guaranteed power supply. The problems of successful and efficient development of RES, including wind energy, should become the most important issues already in the near future, and it should be noted that positive steps in this direction have been taken in recent years. At the same time, it should be understood that RES are not an alternative to the "traditional large-scale" power industry, but rather complement it, occupying its own very specific niche.
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20

Zhang, Mingzhu y Xiaojing Li. "Development status and prospect of new energy technology". E3S Web of Conferences 233 (2021): 01065. http://dx.doi.org/10.1051/e3sconf/202123301065.

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In the current severe situation of continuous shortage of energy resources, the global energy structure is undergoing profound changes. New energy is the main direction of the energy transformation, and the iterative innovation of new energy technology is an important means to promote the transformation of the global energy industry. From the perspective of new energy technology, this paper mainly introduces wind power generation technology and photovoltaic power generation technology. Firstly, the basic principles of wind power and photovoltaic power generation technology are described; Secondly, it counts the current status of the global wind power and photovoltaic market in 2019 and the change trend of installed capacity during 2001-2019, further analyze the development status of these two new energy technologies; finally, it summarizes the development status of new energy technology and makes a prospect for its future development.
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21

Guo, Zhi Ping, Qing An Li, Qing Long Liu y Yan Fei Wang. "A Review of Wind Energy Activities in China". Advanced Materials Research 424-425 (enero de 2012): 1318–21. http://dx.doi.org/10.4028/www.scientific.net/amr.424-425.1318.

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China is the largest developing country with the annual growth rate of 9.8% and the second largest energy consumption, greenhouse gas emissions and CO2 emissions in the world. Wind energy helps decreasing import dependency, diversifying sources of production, and contributes to a sustainable development in many countries. This article explores the importance of global wind turbine development in 2010. And then introduced the use of wind power annual development condition and the distribution characteristics of wind resources in China. Finally the existing problems were pointed out in the wind power industry of China, and have a guiding significance for the development of the future of China's wind power career.
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22

Wang, Gang y Jian Zhong Shi. "New Non-Grid Wind Power Desalination Systems Research". Applied Mechanics and Materials 488-489 (enero de 2014): 970–74. http://dx.doi.org/10.4028/www.scientific.net/amm.488-489.970.

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the large-scale application of non-grid-connected wind power in sea water desalination industry has not only solved the difficulty in grid connection of wind power, but also can be an inexhaustible clean energy supply for the sea water desalination. Such application, breaking through the traditional sea water desalination technology and wind power development ideas and realizing the 100% local use of renewable energies, is a perfect combination of the new energy industry and the power consumption industry. The large-scale industrialization application of non-grid-connected wind power sea water desalination can not only maximize the efficiency of wind power and realize the unification of social benefit, environmental benefit and economic benefit, but also is of great strategic significance in accelerating the transformation of the economic development mode of China, and meanwhile, plays a leading role in the diversified development of the world wind power industry. 1. High-energy consumption factors restrict the development of sea water desalination Sea water desalination is a source-opening incremental technology for realizing the utilization of water resources, which can increase the total amount of fresh water and is not limited by time, space and climate with good water quality, and can guarantee the stable water supply of drinking water for coastal residents and industrial water supplementation. Since sea water desalination is the substitutional and incremental technology of fresh water resources, many countries are attaching more and more importance on it. With the rapid development of the economy and society of China, especially with the acceleration of urbanization, some coastal developed areas and large cities near the sea are having a greater and greater demand on water resources. In this condition, the development of sea water desalination has a great strategic significance in the supplementation of water resources in the sustainable development process of these areas[1,2].
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23

Liu, Zhi Bin. "Wind Power Industry Competitiveness Evaluation in Hebei Province Based on Improved Fuzzy Comprehensive Evaluation Model". Applied Mechanics and Materials 411-414 (septiembre de 2013): 2567–70. http://dx.doi.org/10.4028/www.scientific.net/amm.411-414.2567.

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The wind resource is rich relatively in Hebei Province, and the wind energy utilization also has great potential. So it can play an important role to the sustainable development of Hebei Province energy, prompting the coordinated development of social economy and ecological environment. As a kind of renewable clean energy, wind power has the advantage of no pollution, low cost, but the wind power also has the inherent shortcoming of intermittence, random and instability. To evaluate the competitiveness evaluation of wind power industry in Hebei Province scientifically and accurately, this paper constructed the multi-level fuzzy comprehensive evaluation model, and defined the subordinate function and weight proportion. The competitiveness evaluation of wind power industry in Hebei province showed that the results given by this model are reliable, and this method to evaluate the industry competitiveness is feasible.
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24

Wang, Zhi Dong y Lian Guang Liu. "Research the Planning Method of Large-Scale Wind Power Development". Advanced Materials Research 347-353 (octubre de 2011): 1060–65. http://dx.doi.org/10.4028/www.scientific.net/amr.347-353.1060.

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This study examines the primary planning research of Chinese wind power development. In recent year, wind power in China is developed rapidly which is dealing with many challenges and risks caused by limited primary energy resources and climate changes. Facing these challenges and risks, a better planning method of wind power is essentially. This research points out planning method of wind power consumption access to power grid. Based on wind power farm size and distribution, linked to power demand requirement of the future, research will put forward a better transmission power grid planning which adapted all kinds of wind power industry base.
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25

Zhao, Zhen Yu, Ji Hu y Jian Zuo. "Performance of wind power industry development in China: A DiamondModel study". Renewable Energy 34, n.º 12 (diciembre de 2009): 2883–91. http://dx.doi.org/10.1016/j.renene.2009.06.008.

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26

Liu, Zhi Bin. "Analyzing the Wind Power Industry Competitiveness Based on SDM-TGSMN Method in Hebei Province". Advanced Materials Research 805-806 (septiembre de 2013): 338–41. http://dx.doi.org/10.4028/www.scientific.net/amr.805-806.338.

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As a kind of new green renewable energy, wind power is being paid more attention to by the countries in the world. Wind energy resource is rich in Hebei Province, and wind energy has great potential, so it is important for energy sustainable development, harmonious development of social economy and ecological environment to develop and utilize wind power in Hebei Province. In order to analyze the wind power industry competitiveness in Hebei Province scientifically and accurately, this paper introduced the tree-structured growing self-organizing map network (TGSMN) into the spatial data mining (SDM) to be used in spatial clustering. This method not only can make up the limitation of the more data limit and biggish computation in the common spatial data mining, but overcome the restriction of traditional maps that must appoint in advance. The wind power industry competitiveness evaluation in Hebei Province showed that the results given by this method are reliable.
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27

Li, Rong Hua y Cui Lin Wang. "Study on the Strategy of Energy Industry Development in Gansu Province". Applied Mechanics and Materials 448-453 (octubre de 2013): 4292–95. http://dx.doi.org/10.4028/www.scientific.net/amm.448-453.4292.

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based on the present situation about coal, petroleum and natural gas, electricity, renewable resources of energy industry in Gansu province, analyze the energy industry competitive power: The coal industry structure became reasonable, the safe production and the brain drain are serious; The petrochemical industry gradually tended to cluster development, deep processing products lacked; Power grid construction developed as well, grid resource allocation capacity needs to promote ; wind resources and solar energy resources are rich, electric generating capacity is not high. Then put forward the energy industry development strategy: optimize the energy structure, adjust the energy industrial layout, promote energy science and technology innovation, improve the energy macro-control system, deepen the reform of the energy system ,further establish policies and standards for sustainable energy development.
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28

Price, Trevor J. "Edward Golding's Iinfluence on Wind Power". Wind Engineering 29, n.º 6 (diciembre de 2005): 513–30. http://dx.doi.org/10.1260/030952405776234553.

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From it's beginnings in the late 1800s, wind power engineering had developed in a seemingly haphazard way as early wind engineers worked on national wind power programmes. However, international co-operation of allies in engineering programmes during World War Two, e.g. for aircraft design, later became a precedent for co-operation in wind engineering. This paper details Edward Golding's impact on the development of wind power, in the UK and internationally, during the 1940s through to the 1960s. His book, ‘The generation of electricity by wind power’ (1955) and his subsequent leadership within a coordinated international development programme for wind power were seminal. Golding's work in wind power is set within his experience in the electricity supply industry.
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29

Aho, Jacob P., Andrew D. Buckspan, Fiona M. Dunne y Lucy Y. Pao. "Controlling Wind Energy for Utility Grid Reliability". Mechanical Engineering 135, n.º 09 (1 de septiembre de 2013): S4—S12. http://dx.doi.org/10.1115/1.2013-sep-4.

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This article provides an overview of utility grid operation by introducing the fundamental behavior of the electrical system, explaining the importance of maintaining grid reliability through balancing generation and load, and describing the methods of providing ancillary services using conventional utilities. This article also introduces the basic structural components of wind turbines, explains the traditional control systems for capturing maximum power, and highlights control methods developed in industry and academia to provide active power ancillary services with wind energy. As the penetration of wind energy continues to grow, the participation of wind turbines and wind farms in grid frequency stability is becoming more important. The future of wind energy development and deployment depends on many factors, such as policy decisions, economic markets, and technology improvements. Improvements through research and development in areas such as forecasting, turbine manufacturing processes, blade aerodynamics, power electronics, and active power control systems will continue to be a key driver for wind energy technology.
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Wu, Yun Na, Xin Yun Li y Min Gao. "Analysis of Wind Power Industry and Construction of New Industrial Chain Model". Advanced Materials Research 722 (julio de 2013): 121–25. http://dx.doi.org/10.4028/www.scientific.net/amr.722.121.

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In recent years, wind power industry has developed rapidly, making it a major development area in new energy industry. However, the development of Chinas wind power industry still faces a lot of bottleneck. To solve the problems, this article will introduce KSF (Key Success Factors) and other related theories to the construction of industrial chain model. With the combination of global strategic objectives, analyze and determine the critical success factors, which impact the development of our wind power industry, through KSF and matrix discrimination, and refine them to specific evaluation criteria and index, according to their performance, thus forming a comprehensive evaluation system for real-time monitoring and adjustment, and construct a new industrial chain model on this basis.
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31

Zhou, Hui Xia y Xiao Jun Lv. "Efficiency Evaluation of Investment about China's Wind Farms Based on DEA Model". Applied Mechanics and Materials 448-453 (octubre de 2013): 1829–34. http://dx.doi.org/10.4028/www.scientific.net/amm.448-453.1829.

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Wind power industry has been attracting the attention of various countries from the very beginning because of the energy shortage in recent years and Chinese wind power industry has made a rapid progress in the past five years. However, a further study is required to evaluate investment efficiency of wind power industry under the current investment pattern. By sorting out the input and output data of Chinese wind farms from 2005-2010 and constructing and measuring DEA input and output model, this paper finds that efficiency of government-led investment pattern is not high and also analyzes the reasons. Finally, the paper points out enterprises-led investment pattern will create a healthy and sustainable development for wind power industry.
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32

Rehman, Ateekh Ur, Mustufa Haider Abidi, Usama Umer y Yusuf Siraj Usmani. "Multi-Criteria Decision-Making Approach for Selecting Wind Energy Power Plant Locations". Sustainability 11, n.º 21 (2 de noviembre de 2019): 6112. http://dx.doi.org/10.3390/su11216112.

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In pursuit of green technology innovations, the energy industry is showing an interest in sustainable sources such as wind energy generation. The Saudi Arabian energy industry has a 2030 target to generate and transmit electricity to major customers nationwide and other neighboring Gulf countries. However, the selection of wind energy power plant locations is a concern because the decision process involves social, technological, economical, and environmental factors. The originality of this study lies in (1) proposing an integrated quantitative and qualitative multi-criteria decision making framework for selecting wind-energy power plant locations; (2) applying the proposed framework in the context of the energy industry in a gulf region country and investigating expert-based and entropy-based criterion weight assignments; (3) choosing five possible alternative wind energy power plant locations with 17 response criteria for each alternative to help decision makers identify the best possible alternative; and (4) establishing the superiority of one alternative over another (if it exists). The presented approach extends considerable support to the comparing and ranking of alternatives along with its validation and sensitivity analysis. Based on the proposed multi-criteria decision-making approach, an appropriate wind energy power plant location has been successfully selected among the five alternatives.
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33

Klavdienko, Viktor. "Renewable Energy: Global Development Trends". Moscow University Economics Bulletin 2020, n.º 2 (30 de abril de 2020): 147–60. http://dx.doi.org/10.38050/01300105202028.

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The article explores the main trends and features of renewable energy development in various countries of the world in the context of modern transformation of the global energy economy - the transformation of the energy system based on a widespread use of renewable energy sources and the generation of cheaper and “clean” energy. The author focuses on wind and solar energy, considers the factors of accelerated growth of these areas of renewable energy defines funding and the main directions of R&D and discloses innovative technological transformations in these industries. The paper analyzes the dynamics in the costs of generating electricity based on the use of wind and solar radiation in various countries and identifies a steady downward trend in reducing these costs. Based on the analysis, the author presents a vision of existing problems and prospects for the transformation of electric power industry in favor of renewable energy sources.
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Bi, Ting Yan. "Research of Development Policy for Renewable Energy Industry". Applied Mechanics and Materials 291-294 (febrero de 2013): 1185–88. http://dx.doi.org/10.4028/www.scientific.net/amm.291-294.1185.

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The issues of energy and environment were two outstanding problems to control our economical and social sustainable development. Our government focused on the development of renewable energy industry all the time, having taken some positive matching policies in order to promote development and utilization of the renewable energy, which has gained great achievements. But with the consumption increase of oil, gas and coal etc, pressures in the ecological environment protection were becoming larger, and energy saving and emission reduction, green development, development of new energy have become the world's economic development strategies. As for China, there are still many difficulties and problems realizing the sustainable development of renewable energy industry, and we need to take the positive study and learn from foreign advanced experience. In biological energy, water power, wind power and solar energy and some like, we need to establish and perfect the relevant measures, and further make the development of renewable energy industry clear in the position of the national strategies. And improving the more positive policy to encourage to support renewable energy industry development, and earnestly carrying out tax, credit, investment, pricing and subsidies policies, supporting renewable energy industry international standards, promoting new energy resources, saving and replacing the fossil energy are the strategic choices to guarantee energy security, optimize the energy structure, and promote national economic and social sustainable development, and protect the ecological environment responding to climate change, to adjust the industrial structure.
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35

Ling, Sonja y Andy Linehan. "Guidelines for Wind Power and Wildlife in Washington State, USA". Wind Engineering 27, n.º 4 (agosto de 2003): 273–83. http://dx.doi.org/10.1260/030952403322665253.

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The Washington Department of Fish and Wildlife (WDFW) adopted wind power guidelines in 2002 to promote standardisation of the agency's responses to proposed wind energy projects in Washington State. While the purpose of the guidelines was to create consistency from the agency, some of the recommendations seemed overly stringent and unjustified to the wind industry. Recognising the implications of the guidelines on wind energy development in the State, the Renewable Northwest Project (RNP), along with industry members and their permitting consultants, successfully engaged the agency in a discussion to reach fair and consistent wind power guidelines. The account and methods of negotiation are detailed as an example for abating possible adverse avian and habitat environmental impact of wind farms. The three key areas of negotiation were: pre-permit environmental studies, wildlife and habitat mitigation, and an alternative fee-based mitigation option.
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36

Li, Lingyun, Jingshuang Gan y Xinju Guo. "Research on the Development Roadmap of Wind Power Industry Under High Renewable Energy Penetration". IOP Conference Series: Earth and Environmental Science 384 (29 de noviembre de 2019): 012018. http://dx.doi.org/10.1088/1755-1315/384/1/012018.

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Kirkegaard, Julia. "China's Experimental Pragmatics of 'Scientific Development' in Wind Power: Algorithmic Struggles over Software in Wind Turbines". Copenhagen Journal of Asian Studies 34, n.º 1 (27 de octubre de 2016): 5–24. http://dx.doi.org/10.22439/cjas.v34i1.5186.

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This article presents a case study on the development of China's wind power market. As China's wind industry has experienced a quality crisis, the Chinese government has intervened to steer the industry towards a turn to quality, indicat-ing a pragmatist and experimental mode of market development. This increased focus on quality, to ensure the sustainable and scientific development of China's wind energy market, requires improved indigenous Chinese innovation capabili-ties in wind turbine technology. To shed light on how the turn to quality impacts upon the industry and global competition, this study adopts the micro-proces-sual, socio-technical, relational and empiricist lens of Science & Technology Stud-ies (STS). It illustrates how Sino-foreign collaborative relations around the core technology of software (in control systems and simulation tools) have become politicised, and how controversies unfold over issues associated with intellectual property rights (IPRs), certification and standardisation of software algorithms. The article concludes that the use of this STS lens makes a fresh contribution to the often path-dependent, structuralist and hierarchical China literature, offering instead a possibility- and agency-filled account that can shed light on the dynam-ics of China's fragmented governance and experimental market development.
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38

Liu, Hui Fang. "Non-Grid-Connected Wind Power DC Network Study Based on Hybrid Convertor". Advanced Materials Research 546-547 (julio de 2012): 295–300. http://dx.doi.org/10.4028/www.scientific.net/amr.546-547.295.

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Applying non-grid-connected wind power to high energy consuming industry has broad development prospects. This paper presents a compound DC power transmission net to realize high efficiency and reduce the loss. This net consists of current source converter (CSC) based on naturally commutated thyristor and voltage source converter (VSC) based on IGBT. Super capacitor connected to the load side stabilizes the wind power fluctuation. The coordinated control strategy of wind power, energy storage device and load is provided. Simulation results based on real wind power shows the validity of the system.
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39

Banerjee, Manjushree y Gautam Dutta. "Factors influencing grid interactive wind power industry in India". International Journal of Energy Technology and Policy 15, n.º 4 (2019): 351. http://dx.doi.org/10.1504/ijetp.2019.10021643.

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Banerjee, Manjushree y Gautam Dutta. "Factors influencing grid interactive wind power industry in India". International Journal of Energy Technology and Policy 15, n.º 4 (2019): 351. http://dx.doi.org/10.1504/ijetp.2019.102656.

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41

Hsu, Chiung-Wen y Shu-Ping Ho. "Assessing feed-in tariffs on wind power installation and industry development in Taiwan". Renewable and Sustainable Energy Reviews 58 (mayo de 2016): 548–57. http://dx.doi.org/10.1016/j.rser.2015.12.255.

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42

Zhang, Shuo, Li Chen, Yidan Zheng, Yingzi Li, Ying Li y Ming Zeng. "How Policies Guide and Promoted Wind Power to Market Transactions in China during the 2010s". Energies 14, n.º 14 (7 de julio de 2021): 4096. http://dx.doi.org/10.3390/en14144096.

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Chinese wind power policies have productively promoted the development of wind power and also promoted the process of wind power participation in electricity market transactions. However, with policy emphasis on investment and neglect of utilization, there have been some difficulties in the development of Chinese wind power. To highlight the guiding role of policy and improve the wind power policy system, an analysis of Chinese wind power policies is conducted in this paper. First, aiming at the main components of wind power chain, including wind power construction, grid connection, transmission, and sales, a comprehensive and systematic frame of Chinese wind power policy system is proposed from the three aspects of development planning, administrative management and market transactions. Second, the indicator system of Chinese wind power development effectiveness is extracted, including installed capacity, power generation, power utilization hours, carbon emission reduction, investment, on-grid power price, wind curtailment rate, etc., and the effectiveness of policy implementation is verified. Third, new policy recommendations are proposed from parts of transmission, consumption, and market, for the development of Chinese wind power industry in the 14th Five-Year Plan period and the goal to reach the crest value of carbon dioxide emissions by 2030 and achieve carbon neutrality by 2060. In this paper, advice to supplement and improve the Chinese wind power policy system is provided, which may it promote better development of Chinese wind power in the following decade from the policy point of view.
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43

Zhao, Wen Hui, Hui Wang y Jing Yan Ge. "A Dynamic Growth Model of Wind Power Optimal Investment Paths". Advanced Materials Research 608-609 (diciembre de 2012): 713–18. http://dx.doi.org/10.4028/www.scientific.net/amr.608-609.713.

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The current worldwide energy consumption is largely dominated by non-renewable energies such as coal, oil and gas. For well-known reasons, this concept should be changed to a more sustainable one based on renewable. Wind power, the most developed and commercialized renewable energy technology, has considerable potential. The relationship between economic growth, energy exhaustion and green house gas (GHG) emissions becomes the major recent years. Considering economic development, demand for energy, emissions abatement and wind energy substitution rate, a dynamic growth model with substitution of wind energy is presented. Based on the model, it describes how the activity of substitution impacts other elements in the economic system in the future. China is the selected study region and the optimal systemic project of wind power industry has been obtained by using the theory of cybernetics.
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44

Wang, Gang, He Nan Dong, Feng Sun, Yang Yang Ge y Yao Fu. "Research on a New Method to Achieve LVRT for Wind Farms by Short-Circuit Test". Advanced Materials Research 953-954 (junio de 2014): 552–56. http://dx.doi.org/10.4028/www.scientific.net/amr.953-954.552.

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With global warming, more and more people begin to pay close attention to the development of new energy, especially wind power. To promote the healthy development of the wind power industry, countries are required to wind farms with a function of low voltage ride through. The research object of this paper is the capacity for 49.5MW wind farm, using German power system simulation software DIgSILENT/Power Factory to build wind farm model, proposed a new method to achieve LVRT for wind farms by short-circuit test. By comparing the simulation results with the test results, we can verify that the method can achieve the desired requirements.
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45

Lewis, Joanna I. "Industrial policy, politics and competition: Assessing the post-crisis wind power industry". Business and Politics 16, n.º 4 (diciembre de 2014): 511–47. http://dx.doi.org/10.1515/bap-2014-0012.

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Wind power remains one of the fastest growing energy sources in the world, even as countries have struggled to come back from the global economic crisis of 2008. Yet the sector's rise has been the product of a crucial shift in how governments approach renewable energy. To build political support for wind power, governments have added industrial policy instruments to traditional renewable energy deployment mechanisms. This paper argues that we are witnessing a rise in protectionism in the wind power sector growing out of specific political and economic challenges at the national level that have arisen in the period following the 2008 crisis. In addition, this paper demonstrates that protectionism, justified by a rationale of promoting local economic development, takes many forms, and countries have come up with ever more varied and sophisticated methods of using industrial policy to establish and protect nascent, strategic industries. Finally, it challenges conventional wisdom that protectionism is reserved for the emerging economies as either a strategy to improve economic competitiveness or as a short cut to technological innovation. It demonstrates that while these strategies do indeed persist in emerging economies, North America and Western Europe continue to protect their own wind industries, even as they initiate disputes with countries for implementing similar measures.
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Yang, Jian, Jing Ge, Zuofu Jiang, Chi Zhang, Jianhua Lv, Guode Ying y Haohua Wu. "Applicability of Low Frequency Transmission Technology in Offshore Wind Power Transmission Scene". E3S Web of Conferences 182 (2020): 01001. http://dx.doi.org/10.1051/e3sconf/202018201001.

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This paper investigates the worldwide development status of wind power and the main opinions and advantages of offshore wind power development in the industry, and summarizes that the development of offshore wind power will be in the direction of large capacity and distant sea area. At the same time, the distribution of wind energy resources in China’s coastal areas is investigated, and combined with the constraints of offshore wind energy development in China, it is concluded that offshore wind power development in China will also develop to distant sea areas. Secondly, three transmission modes including power frequency AC, flexible HVDC and low frequency AC are briefly described, and the technical economy of the three modes is analyzed with typical cases. In addition, the technical feasibility of 400 MW offshore wind power Grid-connected through low-frequency transmission technology is verified by system model building and simulation. Thirdly, combined with the development trend of offshore wind power, current research and manufacturing level, the opportunities and challenges of the application of low frequency transmission technology are analyzed. Finally, the main points of this paper are summarized. It is preliminarily clear that the low-frequency transmission mode has better technical and economic performance within a certain transmission distance, and can be used as a beneficial supplement to the conventional power frequency and flexible HVDC transmission mode.
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47

Liu, Jicheng, Qiushuang Wei, Qiongjie Dai y Chunyan Liang. "Overview of Wind Power Industry Value Chain Using Diamond Model: A Case Study from China". Applied Sciences 8, n.º 10 (12 de octubre de 2018): 1900. http://dx.doi.org/10.3390/app8101900.

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Sustainable energy development has gained worldwide attention, in part thanks to the wind power industry value chain that focuses on overall value creation and innovation, especially in China. This paper aims to construct a wind power industry value chain model and comprehensively analyze factors that have significant influences on it using a modified diamond model, which has remained nebulous. Focused on the value-adding effect of constructed value chains, we offer key ideas from different angles. A factor condition lays the foundation of the value chain, and shows that China is experiencing energy structure adjustment in which wind power will play a key role; its resource potential is huge, but with mismatched distribution. Demand conditions reveal an increasing demand for wind but serious wind rejection as well; this is where the value-adding probability exists. Related and support departments collaborate to determine the overall value creation process. Firm strategy, structure, and rivalry are terms that describe possible value-adding subjects considering the wind industry as a whole. Government and opportunity provide robust prices and non-price policies to support value integration, and Technology is an effective factor in cost reduction and value creation as a high value-adding sector. Furthermore, a comparison of wind power industry value chains in China and Japan is conducted. Our findings underscore that a gap exists between actual performance and the expected wind power industry value chain, and corresponding measurements to promote the performance are discussed, including encouraging diversified business models, enhancing R&D and independent innovation, professional cultivation, effectively reducing wind rejection rate, and the full range of government support.
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48

Fang, Jicheng, Dongqin Shen, Xiuyi Li y Huijia Li. "An efficient power load forecasting model based on the optimized combination". Modern Physics Letters B 34, n.º 12 (30 de marzo de 2020): 2050114. http://dx.doi.org/10.1142/s0217984920501146.

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The new energy industry gains more and more attention since the problem of resource scarcity and utilization of the renewable energy has become a global highlight issue. In this paper, we propose a new load forecasting model under the development of new energy industry by choosing the typical wind power as the key subject, which is also an important reference for other energy industries. The wind power load forecasting model is built based on optimized combination, which is forecasted and analyzed by the time series, the Markov and the gray forecasting models individually, and then combined by the optimized weighting coefficients. The method has overcome the limitations of poor adaptability of the single forecasting models and come out with an ideal result. Experimental results show our method has better performance compared with other related algorithms in different datasets.
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49

Dismukes, John P., Lawrence K. Miller, Andrew Solocha y John A. Bers. "Wind Energy Electrical Power Generation Industry Life Cycle - Impact of Modern Materials Systems on Economic Viability". Key Engineering Materials 380 (marzo de 2008): 43–65. http://dx.doi.org/10.4028/www.scientific.net/kem.380.43.

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This study addresses past, current and future development of the wind electrical power industry, that began prior to 1890 in Cleveland, Ohio and Askov, Denmark. Overcoming technological, business, societal and political hurdles required approximately 120 years of exploration to establish wind electricity generation as a radical innovation entering the acceleration stage of the industrial technology life cycle. Materials and integrated materials systems featuring mechanical, structural, fluid dynamic, electrical, electronic, and telecommunications functionality developed and introduced over that period have contributed uniquely to current commercial viability of wind turbine electrical power generation. Further growth and maturation is expected to continue to ≈ 2100, corresponding to a life cycle of ≅ 210 years. This finding has profound implications for radical innovation theory and practice, since historical analysis attributes a 50-60 year life cycle for 5 industrial revolutions, and emerging theory anticipates acceleration of radical innovation, as discussed in companion papers in this conference. Rapid growth in installed capacity of large scale wind turbines (>1MW) now positions wind electrical power generation in the Acceleration Stage, characterized by market competition between dominant wind turbine designs and societal acceptance by wind energy communities of practice in Europe, North America and Asia. Technical cost model based learning curve projections of Cost of Electricity (COE) suggest that by 2020 COE from wind will be competitive, without tax incentives, with electricity from conventional fossil and nuclear fuel sources. Capture by wind energy of up to 20% of the world electricity market appears likely by the end of the 21st Century.
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50

Han, Qian y Asifujiang Abudureyimu. "Opportunities and Challenges of Wind Power Generation in China". Applied Mechanics and Materials 521 (febrero de 2014): 850–54. http://dx.doi.org/10.4028/www.scientific.net/amm.521.850.

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China's wind power market development is set to continue its growth trend of 2011. The newly added installed capacity will be in the range of 15-18GW and is expected to reach approximately 18GW. By 2015, the installed wind power capacity will reach 100GW. The percentage of decentralized wind power will further increase, but large-scale development and land-based wind power development will still be the focus, while the ratio of decentralized wind power has the potential to reach a maximum of 30%. As power grid corporations continue to improve their ultra-high voltage power transmission lines, intelligent power grids and other infrastructure, the power grids' ability to absorb wind power electricity on a largescale, and the scale of cross-region wind power transmission will increase, with the wind power grid-connection rate also significantly increase. The wind power manufacturing industry has entered a low-profit era; competition will intensify, the market will become more mature, and wind power manufacturers will face greater market challenges. However, the wind power industry's maturity and lowering costs have enhanced wind power's competitiveness compared to traditional energy sources. Wind power has become a highstrength emerging power supply technology and its contribution to China's electricity mix will gradually increase.
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