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Journal articles on the topic 'Smart electrical transmission system'

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1

Jaysawal, Anoop. "Cyber Security in Smart Grid System." International Journal of Advanced Research in Computer Science and Software Engineering 7, no. 8 (2017): 341. http://dx.doi.org/10.23956/ijarcsse.v7i8.85.

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Abstract: The smart grid is an evolution of the electrical grid to respond to these challenges. A smart grid is an energy transmission and distribution network enhanced through digital control, monitoring, and telecommunications capabilities. It provides a real-time, two-way flow of energy and information to all stakeholders in the electricity chain, from the generation plant to the commercial, industrial, and residential end user. This evolution is crucial for integrating both renewable and distributed energy resources and to improve the efficiency and sustainability of the electrical grid an
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Yacouba, Yazid Hambally, Amadou Diabagaté, Abdou Maiga, and Adama Coulibaly. "Multi-agent System for Management of Data from Electrical Smart Meters." International Journal of Information Technology and Computer Science 13, no. 1 (2021): 18–43. http://dx.doi.org/10.5815/ijitcs.2021.01.02.

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The smart meter can process sensor data in a residential grid. These sensors transmit different parameters or measurement data (index, power, temperature, fluctuation of voltage and electricity, etc.) to the smart meter. All of these measurement data can come in different ways at the smart meter. The sensors transmit each measurement data to the smart meter. In addition, the collection of this data to a central system is a significant concern to ensure data integrity and protect the privacy of residents. The complexity of these data management also lies in their volume, frequency, and scheduli
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AVERIKHINA, Tetiana, Maryna BURIACHENKO, and Valeriia VASYLIEVA. "Modern trends of the world market of electrical equipment." Economics. Finances. Law, no. 6/1 (June 30, 2021): 5–9. http://dx.doi.org/10.37634/efp.2021.6(1).1.

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Introduction. The world market of electrical equipment is developing very fast. There are many companies in the market that sell electrical equipment, among them there are companies that occupy leading positions. Today, the world market of energy engineering is estimated at 87 billion dollars per year, based on the structural dynamics of growth, the annual volume can reach 110-115 billion dollars per year until 2025. The global market for energy equipment service in 2020 is 31.7 billion dollars, including: LTSA (long-term service) 47 %, modernization – 20 %, field service – 24 %, engineering –
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Sechilariu, Manuela. "Intelligent Energy Management of Electrical Power Systems." Applied Sciences 10, no. 8 (2020): 2951. http://dx.doi.org/10.3390/app10082951.

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Smart grid implementation is facilitated by multi-source energy systems development, i.e., microgrids, which are considered the key smart grid building blocks. Whether they are alternative current (AC) or direct current (DC), high voltage or low voltage, high power or small power, integrated into the distribution system or the transmission network, multi-source systems always require an intelligent energy management that is integrated into the power system. A comprehensive intelligent energy system aims at providing overall energy efficiency with regard to the following: increased power genera
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Ziganshin, Ayrat G., and Georgi M. Mikheev. "DIGITALIZATION OF THE ELECTRIC POWER METERING SYSTEM." Vestnik Chuvashskogo universiteta, no. 3 (September 25, 2020): 74–83. http://dx.doi.org/10.47026/1810-1909-2020-3-74-83.

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The article deals with the issue of paying for electricity transmission services by consumers in connection with the introducing on the 1st of July, 2020 the Federal Law no. 522-FZ dated December 27, 2018 and the requirements for smart devices and electricity metering systems. This topic is one of the key points in the fight against non-payments for electrical energy, reducing business losses. The article draws attention to the change in the relationship between a consumer of electrical power and its supplier after the introduction of the above-mentioned law. The opportunities of intelligent e
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Shagiev, Rinat Ildarovich, Arkadi Vasilyevich Karpov, and Sergei Aleksandrovich Kalabanov. "The Diagnostics System for Power Transmission Lines of 6/10 kV." Applied Mechanics and Materials 666 (October 2014): 138–43. http://dx.doi.org/10.4028/www.scientific.net/amm.666.138.

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The article describes the diagnostics system of the power transmission lines of 6/10 kVolts on the basis of smart electric modems. It shows the description of the smart electric modem and the creation principle of the diagnostics system. The main feature here is the use of power transformers as coupling devices with a high-voltage power line.
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Nasution, Tigor Hamonangan, Muhammad Hanafi, Kasmir Tanjung, and Kasmir Fahmi. "Integrated Smart Plug Design." MATEC Web of Conferences 220 (2018): 05001. http://dx.doi.org/10.1051/matecconf/201822005001.

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Smart plug technology currently for user providing one plug module that is able to monitor and control the state of electrical appliance. The addition of plug number gives some deficiencies such as from cost point of view. By looking at the disadvantage made the tool which is able to monitor and control electrical appliance so that smart plug more than one integrated plug module. The manufacture of plug modules includes system design, sensor type selection in module, data delivery process, comparison of measurement module with measuring instrument and system test. From the results of the desig
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Trautmann, Martin, Benedikt Sanftl, Robert Weigel, and Alexander Koelpin. "Simultaneous Inductive Power and Data Transmission System for Smart Applications." IEEE Circuits and Systems Magazine 19, no. 3 (2019): 23–33. http://dx.doi.org/10.1109/mcas.2019.2924508.

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Taha, Mohammed Qasim. "Advantages and recent advances of smart energy grid." Bulletin of Electrical Engineering and Informatics 9, no. 5 (2020): 1739–46. http://dx.doi.org/10.11591/eei.v9i5.2358.

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Smart grid is widely recognized technology used to improve the stability and losses of the electric power system. It is encouraging reliability, efficiency, and effective control of the supply of electrical energy. However, it is a hot topic for recent publications and still has a limited understanding among researchers. This review work is to provide insight and support to the beginner researchers since this topic needs a multidisciplinary background knowledge. The conventional electric transmission system and distribution networks struggle to provide resilient performance and reliable servic
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Mubdir, Bilal, Asaad Al-Hindawi, and Noor Hadi. "Design of Smart Home Energy Management System for Saving Energy." European Scientific Journal, ESJ 12, no. 33 (2016): 521. http://dx.doi.org/10.19044/esj.2016.v12n33p521.

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The rapid change and development in human life, information technology, and the increase in using home gadgets, modern appliances, and electric cars, leads to more dependency on electrical resources and consecutive increase in CO2 emission from generation plant. The current world issue is on how to save the energy by reducing the consumption and decreasing global warming. In this research, Smart Home Energy Management System (SHEMS) has been developed to operate home appliances in an optimum approach. It is aimed at reducing the consumption energy by detecting the residents’ activity and ident
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Abdallah, Lamiaa, and Tarek El-Shennawy. "Reducing Carbon Dioxide Emissions from Electricity Sector Using Smart Electric Grid Applications." Journal of Engineering 2013 (2013): 1–8. http://dx.doi.org/10.1155/2013/845051.

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Approximately 40% of global CO2emissions are emitted from electricity generation through the combustion of fossil fuels to generate heat needed to power steam turbines. Burning these fuels results in the production of carbon dioxide (CO2)—the primary heat-trapping, “greenhouse gas” responsible for global warming. Applying smart electric grid technologies can potentially reduce CO2emissions. Electric grid comprises three major sectors: generation, transmission and distribution grid, and consumption. Smart generation includes the use of renewable energy sources (wind, solar, or hydropower). Smar
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Yang, Lingsheng, Peijie Wang, Biyu Cheng, and Jianping Fang. "Design of Hybrid Antenna System for User Terminal Applications." Frequenz 72, no. 9-10 (2018): 407–14. http://dx.doi.org/10.1515/freq-2017-0197.

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Abstract An eight-element hybrid Smart antenna-MIMO system for user terminal application is proposed in this paper. The hybrid antenna system is based on an eight elements antenna array. When operate with respective feed ports, by using radiation pattern diversity, more than 15 dB isolation among antenna elements can be achieved. After designing the feed networks based on maximum power transmission optimization between the transmit and receive antennas, beam steering performance can be obtained, the eight elements work together as a smart antenna array. The hybrid system has both the advantage
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Xia, Zhuoqun, Zhenwei Fang, Fengfei Zou, Jin Wang, and Arun Kumar Sangaiah. "Research on Defensive Strategy of Real-Time Price Attack Based on Multiperson Zero-Determinant." Security and Communication Networks 2019 (July 16, 2019): 1–13. http://dx.doi.org/10.1155/2019/6956072.

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The smart grid solves the growing load demand of electrical customers through two-way real-time communication of electricity supply and demand sides and home energy management system (HEMS). However, these technical features also bring network security risks to the real-time price signal of the smart grid. The real-time price attack (RTPA) can maliciously raise the real-time price in smart meter, resulting in an increase in electrical customers load demand, causing the extensive damage to the power transmission lines due to overload. In this paper, we based on the behavioral relationship betwe
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Hernández-Callejo, Luis, Amaia Arrinda, David De la Vega, Igor Fernández, and Itziar Angulo. "A comprehensive review of the impact of transmission technologies on the electrical grid." Revista Facultad de Ingeniería Universidad de Antioquia, no. 93 (August 23, 2019): 82–91. http://dx.doi.org/10.17533/udea.redin.20190515.

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The electrical infrastructure needs the integration of communication technologies, and in recent decades the progress has been significant. Therefore, this work presents the latest advances in this subject, as well as new functionalities.The work brings together the advances in automation, from the early stages to the present day. At the moment, the Smart Grid needs to use communication technologies to enable a response to demand, which will allow a different relationship between customer and company. The work presents the existing network architectures and communication protocols used in the
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Yurov, Alexander, Alexander Voronov, Alexey Lukonin, and Vasiliy Yurov. "High-voltage smart electricity metering of 110 kV digital electric networks." E3S Web of Conferences 279 (2021): 01029. http://dx.doi.org/10.1051/e3sconf/202127901029.

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Were considered the technical solutions sufficient for the development of smart systems for automatic information and measurement metering of electrical energy and monitoring of overhead power transmission lines of the 110-220 kV electrical grids, considering the integration of the data flow into Scada-systems of digital substation workplaces in all the accordance with the standard protocols of IEC 61850. The device allows you to control the quality of transmitted electricity, remotely monitor the condition of the line, thereby increasing the reliability of power supply and power flows in the
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Li, Jian, Vincent Henneken, Marcus Louwerse, and Ronald Dekker. "Optical Data Link Module for Data Transmission in Smart Catheters." International Symposium on Microelectronics 2020, no. 1 (2020): 000169–73. http://dx.doi.org/10.4071/2380-4505-2020.1.000169.

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Abstract We demonstrate a stand-alone optical data link module (ODLM) that fits in the limited space budget of smart imaging catheters. The module is based on an extension of the Flex-to-Rigid (F2R) technology platform for miniaturized system integration. The ODLM is a silicon-based interposer that comprises a commercially available Vertical Cavity Surface Emitting Laser (VCSEL), which has its electrical contacts and laser emitting spot on the same surface. With the flexible interconnects, the ODLM reroutes the flip-chipped VCSEL electrical contacts to the side that is perpendicular to the sur
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17

Turner, Matthew J. "Design and development of a smart grid laboratory for an energy and power engineering technology program." International Journal of Electrical Engineering & Education 54, no. 4 (2017): 299–318. http://dx.doi.org/10.1177/0020720916687315.

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This paper presents the design and development of a laboratory facility to accompany a three-course power systems sequence in the Energy and Power Engineering Technology program at Purdue University. This hardware-based system is modeled after the US electric grid and emulates a complete power network: generation, transmission and distribution, end-use, and control. The approach taken is to divide the lab hardware in two: a simplified three-phase, three-bus system for power transfer from a synchronous generator and infinite bus to a variable load, and a multi-bus single phase system with prime
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18

Liu, Zhi Gao, and Shou Xiang Wang. "Application of Virtual Visualization in Smart Power Distribution System." Advanced Materials Research 614-615 (December 2012): 1908–12. http://dx.doi.org/10.4028/www.scientific.net/amr.614-615.1908.

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With the increasing development of the power system, particularly, with the proposing of smart grid and the applying of distributed generation technology, the traditional geographic information system (GIS) which relies on the tables, graphs, has become more and more difficult to meet the needs of power system equipment management, and planning. Three-dimensional (3D) GIS has developed to meet the requirement appropriately. In this paper, we choose ArcGIS as the development platform, ESRI CityEngine 2011 and Google SketchUp as the 3D modeling software. By combining the virtual reality(VR) tech
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19

Zou, Yi, Xiao Hu Xu, Yang Wang, Bo He, and Han Huang. "Model Research on the Whole Industry Chain Value Analysis of Strong and Smart Grid." Advanced Materials Research 1070-1072 (December 2014): 1346–54. http://dx.doi.org/10.4028/www.scientific.net/amr.1070-1072.1346.

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The smart grid has important strategic significance to lead the development of electric power industry upgrading and enhance the comprehensive benefits on economy, society and environment. Started from power generation, transmission, transformation, distribution and utilization five links of strong and smart grid, combined with the practical situation of China's electrical power system, in line with the value creation paths of demonstration projects in different links, this paper put forward the comprehensive benefit research framework of whole industry chain of strong and smart grid, and the
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20

Dong, Li Jun, En Guo Zhu, Qian Zhang, Xuan Liu, and Yan Liu. "A New-Type Data Transmission Scheme and Key Technology of Electric Energy Data Acquisition System." Advanced Materials Research 945-949 (June 2014): 2342–48. http://dx.doi.org/10.4028/www.scientific.net/amr.945-949.2342.

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Electric energy data acquisition system is the necessary requirement to construct "Marketing" infrastructure and smart grid, change the development mode of the company and grid. To solve the problems of the 230MHz wireless private network of the electric energy data acquisition system, such as low communication rate, fewer access points, low acquisition success rate and poor real-time performance, a new-type data transmission scheme of electric energy data acquisition system is proposed. The key technologies, such as carrier aggregation, software radio, multi-antenna, networking, OFDM, safegua
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21

Che, Yajin. "Design of remote smart home control system based on the Internet of Things." MATEC Web of Conferences 175 (2018): 03020. http://dx.doi.org/10.1051/matecconf/201817503020.

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With the continuous innovation of related technology and the rapid development of information industry, the Internet of things, as a new product of information technology, has been applied in many fields, especially in the field of residential home. It is of great significance to promote the quality of people's daily life. In view of this, this paper briefly analyzes the collection and transmission of indoor remote control signal. On the basis of this, the design of remote control software is analyzed and discussed. Finally, the practical application test shows that the remote smart home contr
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22

Yang, Li Xing, Ken An Hou, Chen Gong, and He Ping Ding. "The Application of TD-LTE230M Wireless Power Broadband Network Technology in Smart Power-Stealing Prevention System." Applied Mechanics and Materials 738-739 (March 2015): 1217–20. http://dx.doi.org/10.4028/www.scientific.net/amm.738-739.1217.

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This thesis introduces some disadvantages of traditional Smart power-stealing prevention system and its transmission channel of wireless common grid at present, and proposes a new transmission technology. This new transmission technology is TD-LTE230M wireless power broadband private network technology, it is approved by National Radio Regulatory Commission in China and opened to electric power enterprises only. It has many advantages, for example, good anti-interference, reliability, security, so it is applied in Smart power-stealing prevention system. A new power-stealing prevention system i
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Hovorov, P. P., K. V. Hovorova, А. К. Kindinova, and O. Abdelrahim. "SMART GRID TECHNOLOGY, TRANSMISSION OF ELECTRICAL ENERGY IN POWER SUPPLY AND LIGHTING SYSTEMS OF CITIES." Bulletin of the National Technical University "KhPI". Series: Energy: Reliability and Energy Efficiency, no. 1 (1) (December 30, 2020): 10–14. http://dx.doi.org/10.20998/2224-0349.2020.01.02.

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Modern power supply and lighting systems of cities are complex electrical systems of an automated type, in which the processes in individual power supply systems and city lighting systems are interconnected and interdependent. Therefore, the search for efficient technologies for the transmission of electrical energy in them is an extremely difficult task. The real state of the power supply and lighting systems in cities today is characterized by low operating efficiency, largely due to the low quality of electrical energy and insufficient compensation of reactive power in them. The mutual infl
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Li, Kun, Joseph Cursio, and Yunchuan Sun. "Principal Component Analysis of Price Fluctuation in the Smart Grid Electricity Market." Sustainability 10, no. 11 (2018): 4019. http://dx.doi.org/10.3390/su10114019.

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Large price fluctuations have become a significant character and impede resource allocation in the electricity market. Negative prices and peak load spike prices coexist and represent over-supply and over-demand, respectively. It is important to interpret the impact of these extreme prices on sustainable power management from the perspective of economics. In this paper, we build a principal component analysis (PCA) to assess the impact of the two opposite phenomena on the smart grid electricity system. We perform a big-data study using intra-day data from the Pennsylvania, New Jersey, and Mary
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Chueh, Tung Hung, and Huei Ru Tseng. "Anonymous Authentication for Smart Grid Communications." Applied Mechanics and Materials 145 (December 2011): 364–68. http://dx.doi.org/10.4028/www.scientific.net/amm.145.364.

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The smart grid is a network of computers and power infrastructures that monitor and manage energy usage and uses intelligent transmission and distribution networks to deliver electricity for improving the electric system’s reliability and efficiency. With grid controls, energy transmission management could be enhanced and resilience to control-system failures would be increased. Processing chips and storage units have been embedded into traditional electricity meters, so that they are capable of performing smart functions, called smart meters. Then, smart meters communicate with electrical app
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Chen, Fanlong, Liwu Liu, Qinyu Li, Jayantha Epaarachchi, Jinsong Leng, and Yanju Liu. "Experimental and theoretical analysis of a smart transmission mechanism system." Smart Materials and Structures 27, no. 9 (2018): 095022. http://dx.doi.org/10.1088/1361-665x/aad589.

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Sodhro, Ali Hassan, Sandeep Pirbhulal, Gul Hassan Sodhro, Andrei Gurtov, Muhammad Muzammal, and Zongwei Luo. "A Joint Transmission Power Control and Duty-Cycle Approach for Smart Healthcare System." IEEE Sensors Journal 19, no. 19 (2019): 8479–86. http://dx.doi.org/10.1109/jsen.2018.2881611.

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28

Ahmed, Saeed, Young Doo Lee, Seung Ho Hyun, and Insoo Koo. "A Cognitive Radio-Based Energy-Efficient System for Power Transmission Line Monitoring in Smart Grids." Journal of Sensors 2017 (2017): 1–12. http://dx.doi.org/10.1155/2017/3862375.

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The research in industry and academia on smart grids is predominantly focused on the regulation of generated power and management of its consumption. Because transmission of bulk-generated power to the consumer is immensely reliant on secure and efficient transmission grids, comprising huge electrical and mechanical assets spanning a vast geographic area, there is an impending need to focus on the transmission grids as well. Despite the challenges in wireless technologies for SGs, cognitive radio networks are considered promising for provisioning of communications services to SGs. In this pape
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Elgammal, Adel, and Tagore Ramlal. "Optimal Model Predictive Frequency Control Management of Grid Integration PV/Wind/FC/Storage Battery Based Smart Grid Using Multi Objective Particle Swarm Optimization MOPSO." WSEAS TRANSACTIONS ON ELECTRONICS 12 (July 12, 2021): 46–54. http://dx.doi.org/10.37394/232017.2021.12.7.

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This article forecasts the performance of smart-grid electrical transmission systems and integrated battery/FC/Wind/PV storage system renewable power sources in the context of unpredictable solar and wind power supplies. The research provided a hybrid renewable energy sources smart grid power system electrical frequency control solution using adaptive control techniques and model predictive control (MPC) based on the Multi-Objective Practical Swarm Optimization Algorithm MOPSO. To solve the problems of parameter tuning in Load Frequency Control, the suggested adaptive control approach is utili
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Han, Jinkun, Wei Song, Amanda Gozho, et al. "LoRa-Based Smart IoT Application for Smart City: An Example of Human Posture Detection." Wireless Communications and Mobile Computing 2020 (August 4, 2020): 1–15. http://dx.doi.org/10.1155/2020/8822555.

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Scientists have explored the human body for hundreds of years, and yet more relationships between the behaviors and health are still to be discovered. With the development of data mining, artificial intelligence technology, and human posture detection, it is much more possible to figure out how behaviors and movements influence people’s health and life and how to adjust the relationship between work and rest, which is needed urgently for modern people against this high-speed lifestyle. Using smart technology and daily behaviors to supervise or predict people’s health is a key part of a smart c
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Wang, Li Hui, Jian Sun, and Jian Fei Ji. "Optical Current Sensor Technology in Power System." Key Engineering Materials 562-565 (July 2013): 242–46. http://dx.doi.org/10.4028/www.scientific.net/kem.562-565.242.

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With power voltage and capacity improved greatly, power transmission system put a higher demand on reliability and safe operation of electrical equipments. Electromagnetic sensors and other conventional detection equipment can no longer meet the needs of the power system, and new sensing measurement techniques led to optical current and voltage sensing technology. As their unique advantages, optical current sensing technology is get in-depth study and attention, and gradually used in power system engineering applications. Combined with domestic and foreign research progress of optical current
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Danalakshmi, D., V. Thiruppathy Kesavan, and V. Agnes Idhaya Selvi. "Consumer Centric Flexible Reactive Power Pricing using Scalable Technologies." ECTI Transactions on Electrical Engineering, Electronics, and Communications 16, no. 2 (2018): 63–71. http://dx.doi.org/10.37936/ecti-eec.2018162.171338.

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The reactive power is the background power without which the active power cannot be transmitted in the power systems. In the modern power system, the reactive power pricing is considered as essential in order to maintain the voltage in the transmission line. The modern power system is the grid that functions with smart innovative technological system that provides flexibility, efficiency and availability for the users. The smart grid uses the Internet of Things (IoT) technology to identify and provides the requirement of system reactive power for reactive power pricing. The IoT based wireless
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Hasbullah, Y. Mulyadi, Y. Febriana, and A. G. Abdullah. "Optimization Placement of Static Var Compensator (Svc) on Electrical Transmission System 150 kV Based on Smart Computation." IOP Conference Series: Materials Science and Engineering 306 (February 2018): 012056. http://dx.doi.org/10.1088/1757-899x/306/1/012056.

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Marcu, Ioana, George Suciu, Cristina Bălăceanu, Alexandru Vulpe, and Ana-Maria Drăgulinescu. "Arrowhead Technology for Digitalization and Automation Solution: Smart Cities and Smart Agriculture." Sensors 20, no. 5 (2020): 1464. http://dx.doi.org/10.3390/s20051464.

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The Internet of Things (IoT) concept has met requirements for security and reliability in domains like automotive industry, food industry, as well as precision agriculture. Furthermore, System of Systems (SoS) expands the use of local clouds for the evolution of integration and communication technologies. SoS devices need to ensure Quality of Service (QoS) capabilities including service-oriented management and different QoS characteristics monitoring. Smart applications depend on information quality since they are driven by processes which require communication robustness and enough bandwidth.
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Amin, Massoud, and John Stringer. "The Electric Power Grid: Today and Tomorrow." MRS Bulletin 33, no. 4 (2008): 399–407. http://dx.doi.org/10.1557/mrs2008.80.

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AbstractIn the coming decades, electricity's share of total global energy is expected to continue to grow, I and more intelligent processes will be introduced into the electric power delivery (transmission and distribution) networks. It is envisioned that the electric power grid will move from an electromechanically controlled system to an electronically controlled network in the next two decades. A key challenge is how to redesign, retrofit, and upgrade the existing electromechanically controlled system into a smart self-healing grid that is driven by a well-designed market approach. Revoluti
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Elgammal, Adel, and Tagore Ramlal. "Optimal Frequency Control Management of Grid Integration PV/Wind/FC/Storage Battery Based Smart Grid Using Multi Objective Particle Swarm Optimization MOPSO and Model Predictive Control (MPC)." European Journal of Engineering and Technology Research 6, no. 5 (2021): 50–56. http://dx.doi.org/10.24018/ejers.2021.6.5.2507.

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This article forecasts the performance of smart-grid electrical transmission systems and integrated battery/FC/Wind/PV storage system renewable power sources in the context of unpredictable solar and wind power supplies. The research provided a hybrid renewable energy sources smart grid power system electrical frequency control solution using adaptive control techniques and model predictive control (MPC) based on the Multi-Objective Practical Swarm Optimization Algorithm MOPSO. To solve the problems of parameter tuning in Load Frequency Control, the suggested adaptive control approach is utili
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37

Collotta, Mario, and Salvatore Tirrito. "A Flexible Approach for Smart Management of Transmissions in Power Line Communications." Journal of Computer Networks and Communications 2014 (2014): 1–9. http://dx.doi.org/10.1155/2014/393782.

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Power line communications (PLCs) refer to a technology based on the existing electrical wiring to transmit data among the devices connected to the network. The PLC technology is an excellent solution widely studied and analysed by researchers, even in those areas characterized by strict requirements, such as industries. In this paper, a technique based on fuzzy logic, for the dynamic management of the amplitude of the signal emitted by the devices of a power line network, is proposed. The main aim is to manage the amplitude of the transmission signal in order to reduce the noise introduced int
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Maulana, Eka Maulana, Ramadhani Kurniawan Subroto, and Lunde Ardhenta. "PV Smart Grid Monitoring System Based on Hybrid Telepot and Web Server." Indonesian Journal of Electrical Engineering and Computer Science 10, no. 3 (2018): 1061. http://dx.doi.org/10.11591/ijeecs.v10.i3.pp1061-1069.

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<span lang="IN">Monitoring system in the smart grid is a key aspect that determines the reliability of transmission and communication systems in the power grid. The aim of this research is to conduct monitoring in smart grid easier and obiquitous remotely. Measured electrical parameters in smart gird are monitored through Telegram social media and webservice internet-based wirelessly. The role of web service and telepot in the smart grid monitoring system are installed in Raspberry Pi 3 which responsible to receive and process data from sensor module on each nodes and saved in database.
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Imdadullah, Basem Alamri, Md Alamgir Hossain, and M. S. Jamil Asghar. "Electric Power Network Interconnection: A Review on Current Status, Future Prospects and Research Direction." Electronics 10, no. 17 (2021): 2179. http://dx.doi.org/10.3390/electronics10172179.

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An interconnection of electric power networks enables decarbonization of the electricity system by harnessing and sharing large amounts of renewable energy. The highest potential renewable energy areas are often far from load centers, integrated through long-distance transmission interconnections. The transmission interconnection mitigates the variability of renewable energy sources by importing and exporting electricity between neighbouring regions. This paper presents an overview of regional and global energy consumption trends by use of fuel. A large power grid interconnection, including re
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Shen, Xujun, Qingchun Chen, Yulong Nie, and Keming Gan. "Adaptive Secure MIMO Transmission Mechanism against Smart Attacker." Wireless Communications and Mobile Computing 2020 (February 10, 2020): 1–14. http://dx.doi.org/10.1155/2020/2786314.

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The MIMO transmission against a smart attacker has recently been formulated as a noncollaborative game, in which both the MIMO transmitter and the malicious attacker try to maximize their predefined utilities. In this paper, by carefully analyzing the Nash Equilibrium (NE), we focus on the conditions, in which the gaming results incline to the malicious attacker instead of the MIMO transmitter. In this adverse case, it is highly desirable to develop an effective mechanism to suppress the attack intention by the attacker for better secure communication. Motivated by this, an adaptive secure MIM
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Hubbard, Bryan, Qian Huang, Patrtick Caskey, and Yang Wang. "Safety awareness educational topics for the construction of power transmission systems with smart grid technologies." Construction Economics and Building 13, no. 3 (2013): 114–27. http://dx.doi.org/10.5130/ajceb.v13i3.3385.

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Power transmission facilities in the U.S. are undergoing a transformation due to the increased use of distributed generation sources such as wind and solar power. The current power grid system is also antiquated and in need of substantial retrofits to make it more efficient and reliable. The new energy transmission system being designed and built to optimize power delivery is known as “Smart Grid”. The increased activity in the construction of power transmission facilities and installation of new technologies into the current power system raises potential safety concerns. Existing construction
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Lang, Wei Min, Yuan Cheng Zhu, and Hu Sheng Li. "A Multi-Layer Security Architecture for Wireless Cognitive Sensor Networks in Smart Grids." Advanced Materials Research 546-547 (July 2012): 1107–12. http://dx.doi.org/10.4028/www.scientific.net/amr.546-547.1107.

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Wireless sensor networks have been extensively deployed in the electric power systems for sensing, transmission and control, which provide more opportunities for wireless low power radios to operate. As the next generation electricity system, the smart grid should possess the capability to transmit reliable and real-time information to the control centers of the utilities. In order to solve the issues such as heterogeneous coexistence, spectrum scarcity, tremendous data processing and Security guarantees, revolutionary communication architecture is urgently demanded. In this paper, after analy
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Moon, Guk-Hyun, Rakkyung Ko, and Sung-Kwan Joo. "Integration of Smart Grid Resources into Generation and Transmission Planning Using an Interval-Stochastic Model." Energies 13, no. 7 (2020): 1843. http://dx.doi.org/10.3390/en13071843.

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In the power industry, the deployment of smart grid resources in power systems has become an issue of major interest. The deployment of smart grid resources represents an additional uncertainty in the integrated generation and transmission planning that raises uncertainties in investment-related decision making. This paper presents a new power system planning method for the integration of electric vehicles (EVs) and wind power generators into power systems. An interval-stochastic programming method is used to account for the heterogeneous uncertainties attributable to natural variability and l
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Fan, Fei, Qiaoling Ji, Gongping Wu, Man Wang, Xuhui Ye, and Quanjie Mei. "Dynamic Barrier Coverage in a Wireless Sensor Network for Smart Grids." Sensors 19, no. 1 (2018): 41. http://dx.doi.org/10.3390/s19010041.

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The development of engineering technology such as inspection robots (IR) for transmission lines and wireless sensor networks (WSN) are widely used in the field of smart grid monitoring. However, how to integrate inspection robots into wireless sensor networks is still a great challenge to form an efficient dynamic monitoring network for transmission lines. To address this problem, a dynamic barrier coverage (DBC) method combining inspection robot and wireless sensor network (WSN) is proposed to realize a low-cost, energy-saving and dynamic smart grid-oriented sensing system based on mobile wir
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Bendib, M. E., and A. Mekias. "Solar Panel and Wireless Power Transmission System as a Smart Grid for Electric Vehicles." Engineering, Technology & Applied Science Research 10, no. 3 (2020): 5683–88. http://dx.doi.org/10.48084/etasr.3473.

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In this work, a smart grid system consisting of solar panels and a battery is presented for an electric or hybrid vehicle. For the integration of green power in our system, solar panels are used to charge the accumulator while the power exchange between the vehicle and the grid is realized by power wireless transfer. This paper presents the design, control, and tests of the wireless power transmission, using the basics of magnetic resonant coupling. Numerical data of the power transfer efficiency of the receiver are presented. Graphs are given to show the comparison of power and efficiency wit
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Liu, Caibing, Fang Li, Guohao Chen, and Xin Huang. "TTEthernet Transmission in Software-Defined Distributed Robot Intelligent Control System." Wireless Communications and Mobile Computing 2018 (July 17, 2018): 1–13. http://dx.doi.org/10.1155/2018/8589343.

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With the integration of new technologies such as smart technologies and cloud computing in the industrial Internet of Things, the complexity of industrial IoT applications is increasing. Real-time performance and determinism are becoming serious challenges for system implementation in these Internet of Things systems, especially in critical security areas. This paper provides a framework for a software-defined bus-based intelligent robot system and designs scheduling algorithms to make TTEthernet play the role of scheduling in the framework. Through the framework, the non-real-time and uncerta
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Gong, Lingbing, Chunyan Xiao, Bin Cao, and Yuliang Zhou. "Adaptive Smart Control Method for Electric Vehicle Wireless Charging System." Energies 11, no. 10 (2018): 2685. http://dx.doi.org/10.3390/en11102685.

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In order to shorten the wireless charging time of electric vehicles (EVs) and achieve stable charging, an adaptive smart control method for EV wireless charging is proposed in the paper. The method dynamically tracks the rechargeable battery state during the whole charging process, realizes multi-stage charging of constant current (CC) or constant voltage (CV) by switching two kinds of compensation networks of bilateral L3C and L3C-C, and regulates the charging voltage and current to make it as close as possible to the battery charging characteristic curve. This method can be implemented becau
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Wang, Bao Yi, Xue Liang Zhao, and Shao Min Zhang. "Research on Real-Time Monitoring Data Storage for Smart Grid Based on the Cloud Platform." Applied Mechanics and Materials 494-495 (February 2014): 1837–40. http://dx.doi.org/10.4028/www.scientific.net/amm.494-495.1837.

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With the development of smart grid, mass data collected in real time for equipment monitoring requires higher performance of data store. Hence, a storage system based on cloud platform for smart grid equipment monitoring is designed and achieved. Aiming at electric power monitoring data, this paper designs an improved PI revolving door compression algorithm, which improves the performance of data transmission and storage. Related experiments show the effectiveness of the algorithm. The storage system meets the requirements of real-time, mass, high reliability and high performance of data store
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Zhou, Wen Hua, and Xiao Long Chen. "The Smart Three-Phase Electric Meter Based on ENC28J60 and MSP430F149." Advanced Materials Research 211-212 (February 2011): 1230–34. http://dx.doi.org/10.4028/www.scientific.net/amr.211-212.1230.

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The electric meter is a direct tool by which power enterprise charges for electricity Tariff. This paper describes software and hardware designs of MSP430F149 SCM as the core control processor and smart remote transmission three-phase electric meter with the use of power collection special chip CS5460A to complete power measurement. This instrument integrates data monitoring and measurement of the power with LCD. And it can realize the functions of data remote transmission through communication connection between ENC28J60 chip and main controller and easily of real-time monitoring, data collec
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Tian, Li, Hongnan Li, and Guohuan Liu. "Seismic Response of Power Transmission Tower-Line System Subjected to Spatially Varying Ground Motions." Mathematical Problems in Engineering 2010 (2010): 1–20. http://dx.doi.org/10.1155/2010/587317.

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The behavior of power transmission tower-line system subjected to spatially varying base excitations is studied in this paper. The transmission towers are modeled by beam elements while the transmission lines are modeled by cable elements that account for the nonlinear geometry of the cables. The real multistation data from SMART-1 are used to analyze the system response subjected to spatially varying ground motions. The seismic input waves for vertical and horizontal ground motions are also generated based on the Code for Design of Seismic of Electrical Installations. Both the incoherency of
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