Academic literature on the topic 'Demand profile generation'

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Journal articles on the topic "Demand profile generation"

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Chicherin, Stanislav, Andrey Zhuikov, and Lyazzat Junussova. "District Heating for Poorly Insulated Residential Buildings—Comparing Results of Visual Study, Thermography, and Modeling." Sustainability 15, no. 20 (2023): 14908. http://dx.doi.org/10.3390/su152014908.

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Newer buildings have a lower but smoother profile of indoor temperature, while older buildings are less energy efficient. Sometimes, the indoor temperature is unreasonably high, being 25–30 °C. There are buildings where the indoor temperature does not correlate with the outdoor one. Correction factors adjusting convective heat transfer coefficients are suggested. Energy demand is defined using the rate of heat loss and internal heat gains for the given building construction and design consumption profile. We suggest adjusting the setpoints of the secondary supply temperature to keep indoor and
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Wynn, Sane Lei Lei, Terapong Boonraksa, Promphak Boonraksa, Watcharakorn Pinthurat, and Boonruang Marungsri. "Decentralized Energy Management System in Microgrid Considering Uncertainty and Demand Response." Electronics 12, no. 1 (2023): 237. http://dx.doi.org/10.3390/electronics12010237.

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Smart energy management and control systems can improve the efficient use of electricity and maintain the balance between supply and demand. This paper proposes the modeling of a decentralized energy management system (EMS) to reduce system operation costs under renewable generation and load uncertainties. There are three stages of the proposed strategy. First, this paper applies an autoregressive moving average (ARMA) model for forecasting PV and wind generations as well as power demand. Second, an optimal generation scheduling process is designed to minimize system operating costs. The well-
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Rekha and Channappa Byalihal Shankaralingappa. "Optimal allocation of solar and wind distributed generation using particle swarm optimization technique." International Journal of Electrical and Computer Engineering (IJECE) 13, no. 1 (2023): 229–37. https://doi.org/10.11591/ijece.v13i1.pp229-237.

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Power demand in the current days is increasing more and more where the conventional power generation systems are failing to meet these power demands due to less availability of non-renewable resources. Hence, many of the researchers are working on the distributed generation (DG) by using renewable resources like wind and solar. The penetration towards wind, solar DG faced challenging situations during power generation due to uncertainty in the wind speed and solar radiation. Recent studies have predicted that the combination of both solar and wind can lead to better performance. However, the s
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Afonaa-Mensah, Stephen, Qian Wang, and Benjamin B. Uzoejinwa. "Investigation of Daytime Peak Loads to Improve the Power Generation Costs of Solar-Integrated Power Systems." International Journal of Photoenergy 2019 (November 11, 2019): 1–12. http://dx.doi.org/10.1155/2019/5986874.

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Improving daytime loads can mitigate some of the challenges posed by solar variations in solar-integrated power systems. Thus, this simulation study investigated the different levels of daytime peak loads under varying solar penetration conditions in solar-integrated power systems to improve power generation cost performance based on different load profiles and to mitigate the challenges encountered due to solar variation. The daytime peak loads during solar photovoltaic generation hours were determined by measuring the solar load correlation coefficients between each load profile and the sola
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Thomas, P. C., Shinosh Mathew, and Bobin K. Mathew. "Random Furrowing for a Stochastic Unit Commitment Solution." Engineering World 5 (November 6, 2023): 125–37. http://dx.doi.org/10.37394/232025.2023.5.14.

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The Unit Commitment Problem involves the inherent difficulty of obtaining optimal combinatorial power generation schedules over a future short term period. The formulation of the generalized Unit Commitment Schedule formulation involves the specific combination of generation units at several de-rated capacities during each hour of the planning horizon, the load demand profile, load indeterminateness and several other operating constraints. This largely deterministic schedule continues to find favor with several plant operators, keeping in mind the close operating time-periods involved. However
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Aman, Muhammad Aamir, Sanaullah Ahmad, Babar Noor, and Fazal Wahab Karam. "Mitigating the Adverse Impact of Un-Deterministic Distributed Generation on a Distribution System Considering Voltage Profile." Engineering, Technology & Applied Science Research 8, no. 3 (2018): 2998–3003. https://doi.org/10.5281/zenodo.1400549.

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Electric power systems are enforced to operate near to their stability limit due to the fast increase in power demand. Therefore, voltage stability has become a primary concern. The main cause of voltage variations is the imbalance between generation and consumption. In order to mitigate variations in voltage profile, most of the modern electric power systems are adopting new emerging technologies such as distributed generation (DG). Validation of standard voltage optimization is a difficult task when DG is integrated to medium and low voltage networks. Integration of DG will have diverse impa
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Dodamani, Sateesh N., and Rudresh B. Magadum. "Optimal allocation of wind and solar power based distributed generation: case study." International Journal of Electrical and Computer Engineering (IJECE) 14, no. 6 (2024): 6086. http://dx.doi.org/10.11591/ijece.v14i6.pp6086-6093.

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The main goal of the power system is to congregate the power demand within the power grid while maintaining economical operation, system security and minimal environmental impact. Due to the increasing demand for electrical energy, many problems have arisen with the power systems. These problems include excessive load, uneven system performance, unsatisfactory voltage profile, and an increase in network power losses. To address these issues, more generation sources and improved transmission capacity are required. In order to meet increasing electricity demand, it is more efficient to integrate
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Piero Rojas, Jhan, Guillermo Valencia Ochoa, and Jorge Duarte Forero. "Comparative Performance of a Hybrid Renewable Energy Generation System with Dynamic Load Demand." Applied Sciences 10, no. 9 (2020): 3093. http://dx.doi.org/10.3390/app10093093.

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This article presents the modeling and simulation of a hybrid generation system, which uses solar energy generation, wind energy, and the regulation of a proton exchange membrane (PEM) cell to raise the demanded load, empowering the use of these hydride systems worldwide. This generation system was simulated for different locations in Puerto Bolivar (Colombia), Bremen (Germany), Beijing (China), and Texas (USA), for two demand profiles. The data used for the simulation was calculated using the mathematical solar model proposed by Beistow and Campbell for solar radiation. In contrast, for the w
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Ayalew, Mulusew, Baseem Khan, Issaias Giday, et al. "Integration of Renewable Based Distributed Generation for Distribution Network Expansion Planning." Energies 15, no. 4 (2022): 1378. http://dx.doi.org/10.3390/en15041378.

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Electrical energy is critical to a country’s socioeconomic progress. Distribution system expansion planning addresses the services that must be installed for the distribution networks to meet the expected load need, while also meeting different operational and technical limitations. The incorporation of distributed generation sources (DGs) alters the operating characteristics of modern power systems, resulting in major economic and technical benefits, such as simplified distribution network expansion planning, lower power losses, and improved voltage profile. Thus, in this study, an analytical
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Sandeep, Vuddanti, N. John Varun, and Reddy Salkuti Surender. "Voltage profile improvement of weak grid with solar PV integration." TELKOMNIKA (Telecommunication, Computing, Electronics and Control) 19, no. 3 (2021): 968–76. https://doi.org/10.12928/telkomnika.v19i3.17736.

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The objective of this paper is to improve the voltage profile of the grid in pertinence to grid due to power injection from distributed solar photovoltaic (PV) arrays. Weak grids are modeled as worldwide adaptation of net metering, transactive energy systems, and the possibility of further deterioration of power quality with higher grid penetration. In this paper, a solar PV integrated weak distribution grid modelled as the PV arrays being frequently connected in rural areas, due to various reasons like cheap real estate and lack of accessibility. In this paper, three case studies of PV genera
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Dissertations / Theses on the topic "Demand profile generation"

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Han, Xue. "Quantitative Analysis of Distributed Energy Resources in Future Distribution Networks." Thesis, KTH, Industriella informations- och styrsystem, 2012. http://urn.kb.se/resolve?urn=urn:nbn:se:kth:diva-98484.

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There has been a large body of statements claiming that the large scale deployment of Distributed Energy Resources (DERs) will eventually reshape the future distribution grid operation in numerous ways. However, there is a lack of evidence specifying to what extent the power system operation will be alternated. In this project, quantitative results in terms of how the future distribution grid will be changed by the deployment of distributed generation, active demand and electric vehicles, are presented. The quantitative analysis is based on the conditions for both a radial and a meshed distrib
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Books on the topic "Demand profile generation"

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Sidorenko, Oleg. Microbiological bases of natural milk starter culture. INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1150302.

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For the first time, the educational and methodological manual summarizes knowledge about the peculiarities of the ecology of lactobacilli of natural starter cultures of different geographical zones of Russia. Geographical races of lactobacilli and yeast of dairy national products can be a source of new, more resistant to extreme factors (including medicinal preparations) enzymes that will be in demand in biotechnology, medicine.
 Gives fundamentally important predictions that can be experimentally verified. The prospect of treating the microbiome of the digestive organs is shown — elimina
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Beilin, Igor'. Economic policy and inclusive industrial development of the oil and gas region. INFRA-M Academic Publishing LLC., 2024. http://dx.doi.org/10.12737/2110855.

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The results of studies of the peculiarities of the organization of economic policy and, on their basis, methodological approaches to managing the inclusive production development of Russian regions with a budget-generating petrochemical complex are presented. The study was carried out using the example of oil and gas regions of the Volga Federal District, which, according to the methodology developed by the author, included the Republic of Bashkortostan, the Republic of Tatarstan, the Udmurt Republic, the Perm Territory, the Orenburg Region and the Samara Region. Inclusive production developme
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Book chapters on the topic "Demand profile generation"

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Hosseini, Seyed Vahid, Ali Izadi, Seyed Hossein Madani, Yong Chen, and Mahmoud Chizari. "Design Procedure of a Hybrid Renewable Power Generation System." In Springer Proceedings in Energy. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-63916-7_20.

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AbstractElectrification of small communities in districted off-grid area remains as a challenge for power generation industries. In the current study, various aspects of design of a standalone renewable power plant are examined and implemented in a case study of a rural area in Cape Town, South Africa. Estimating required electricity based on local demand profile, investment, operability, and maintenance costs of different generation technologies are studied in order to investigate their potential in an off-grid clean energy generation system. Several configurations of hybridization of solar s
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Legg, James P., Elohor Diebiru-Ojo, David Eagle, et al. "Commercially Sustainable Cassava Seed Systems in Africa." In Root, Tuber and Banana Food System Innovations. Springer International Publishing, 2022. http://dx.doi.org/10.1007/978-3-030-92022-7_15.

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AbstractCassava is an important crop in sub-Saharan Africa for food security, income generation, and industrial development. Business-oriented production systems require reliable supplies of high-quality seed. Major initiatives in Nigeria and Tanzania have sought to establish sustainable cassava seed systems. These include the deployment of new technologies for early generation seed (EGS) production; the promotion of new high-yielding and disease-resistant varieties; the updating of government seed policy to facilitate enabling certification guidelines; the application of ICT tools, Seed Track
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Simachew, Bawoke. "Loss Minimization in Active Distribution Network." In Handbook of Research on New Solutions and Technologies in Electrical Distribution Networks. IGI Global, 2020. http://dx.doi.org/10.4018/978-1-7998-1230-2.ch007.

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Power loss reduction is an important problem that needs to be addressed with respect to generating electrical power. It is important to reduce power loss using locally generated power sources and/or compensations. This chapter brings a method of presents a method of maximizing energy utilization, feeder loss reduction, and voltage profile improvement for radial distribution network using the active and reactive power sources. Distributed Generation (DG) (wind and solar with backup by biomass generation) and shunt capacitor (QG) for reactive power demand are used. Integrating DG and QG at each
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Gómez-Aguilar, Antonio. "Content Bubbles." In Advances in Business Strategy and Competitive Advantage. IGI Global, 2020. http://dx.doi.org/10.4018/978-1-7998-3119-8.ch022.

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Personalisation has extended to our entire user experience in the digital world. In practical terms, almost all the online services promote us to create a user profile and from there, they offer access to personalised content and/or services. This leads us to the generation of Big Data associated with user profiles which the companies harvest through analytic and predictive algorithms, which they later use to recommend, filter, and provide the content we consume. Having more and more detailed data from user profiles allows for the platforms to detect tendencies in a global public and to create
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Badruddin, Sana, Cameron Ryan Robertson-Gillis, Janice Ashworth, and David J. Wright. "Economically Optimal Solar Power Generation." In Cases on Green Energy and Sustainable Development. IGI Global, 2020. http://dx.doi.org/10.4018/978-1-5225-8559-6.ch010.

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The Ottawa Renewable Energy Cooperative is considering installing solar modules on the roofs of two buildings while they stay connected to the public electricity grid. Solar power produced over their own needs would be sent to the public electricity grid for a credit on their electricity bill. When they need more power than they are generating, these buildings would purchase electricity from the grid. In addition to paying for the electricity they purchase, they would be subject to a “demand charge” that applies each month to the hour during which their consumption is at a peak for that month.
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Badruddin, Sana, Cameron Ryan Robertson-Gillis, Janice Ashworth, and David J. Wright. "Economically Optimal Solar Power Generation." In Research Anthology on Clean Energy Management and Solutions. IGI Global, 2021. http://dx.doi.org/10.4018/978-1-7998-9152-9.ch017.

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The Ottawa Renewable Energy Cooperative is considering installing solar modules on the roofs of two buildings while they stay connected to the public electricity grid. Solar power produced over their own needs would be sent to the public electricity grid for a credit on their electricity bill. When they need more power than they are generating, these buildings would purchase electricity from the grid. In addition to paying for the electricity they purchase, they would be subject to a “demand charge” that applies each month to the hour during which their consumption is at a peak for that month.
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Kumar, Mahesh, Perumal Nallagownden, Irraivan Elamvazuthi, and Pandian Vasant. "Optimal Placement and Sizing of Distributed Generation in Distribution System Using Modified Particle Swarm Optimization Algorithm." In Handbook of Research on Emergent Applications of Optimization Algorithms. IGI Global, 2018. http://dx.doi.org/10.4018/978-1-5225-2990-3.ch021.

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The electricity demand, fossil fuel depletion and environment issues increase the interest of power engineers to integrate small power generations i.e. called distributed generation (DGs) in the distribution system. The DG in distribution system has many positive effects such as it reduces the system power losses, improves the voltage profile and strengthen the voltage stability etc. The placement and sizing of DG play a major role in optimizing these parameters. Therefore, this chapter proposes a modified Particle Swarm Optimization (PSO) algorithm for finding the optimal placement and sizing
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Seward, William, Weiqi Hua, and Meysam Qadrdan. "Electricity Storage in Local Energy Systems." In Microgrids and Local Energy Systems. IntechOpen, 2021. http://dx.doi.org/10.5772/intechopen.99350.

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Traditionally, power system operation has relied on supply side flexibility from large fossil-based generation plants to managed swings in supply and/or demand. An increase in variable renewable generation has increased curtailment of renewable electricity and variations in electricity prices. Consumers can take advantage of volatile electricity prices and reduce their bills using electricity storage. With reduced fossil-based power generation, traditional methods for balancing supply and demand must change. Electricity storage offers an alternative to fossil-based flexibility, with an increas
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Nascimento, Eluan Oliveira, Paulo Roberto Duailibe Monteiro, Eric Serge Sanches, José Ernesto Viqueti Fassarela, and Carlos Henrique Ventura do Rosário Oliveira. "Application of energy generation hybrid solar panels in a university student house." In DEVELOPMENT AND ITS APPLICATIONS IN SCIENTIFIC KNOWLEDGE. Seven Editora, 2023. http://dx.doi.org/10.56238/devopinterscie-102.

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This paper presents the study of technical and economic for the supply of electricity and water heating, using hybrid solar panels to house students from the Fluminense Federal University. The application of hybrid solar panels proved attractive to replace a large number of electric showers present in the facility. Electricity meters were installed in the student's house for one week and the annual profile of consumption and demand was obtained by a comparative and extrapolatory methodology of the measurement result with the monthly electric bills of the university fields. The study evaluated
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Iqbal, Fahad, Ankur Singh Rana, and Shufali Ashraf Wani. "Design and Analysis of a Cost-Effective Standalone Solar." In Handbook of Research on Power and Energy System Optimization. IGI Global, 2018. http://dx.doi.org/10.4018/978-1-5225-3935-3.ch016.

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The foremost issues of the twenty-first century are the ever-increasing challenging demand of electrical energy and controlling the emission of greenhouse gases (GHG). Along with these issues and with limited energy resources, it is imperative to look for non-conventional methods of power generation like from renewable energy resources. Microgrid has emerged as a new field that can meet the energy demand with a special emphasis on good power quality, reliability, and security. A major concern with the use of renewable energy resources is their intermittent nature which makes their integration
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Conference papers on the topic "Demand profile generation"

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Bignold, G. J., and G. P. Quirk. "Electrochemical Noise Measurements in a 500 MW Steam Turbine to Maximise Lifetime under Changing Operational Demands." In CORROSION 2002. NACE International, 2002. https://doi.org/10.5006/c2002-02333.

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Abstract Steam turbine blade and disc failures have occurred from time to time throughout the world. Although they are rare events, the implications for safety, for repair costs and for loss of availability are severe. Current operational and maintenance practices for any particular turbine design may be based on many years of satisfactory service. However, recent deregulation of the power industry in the UK and forthcoming deregulation in the USA may have an effect on operational and reliability issues, as changing operational demands are placed upon power generators through economic forces.
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Karaman, �mer Faruk, Peter Lang, and Laszlo Hegely. "Assessing Distillation Processes through Sustainability Indicators Aligned with the Sustainable Development Goals." In The 35th European Symposium on Computer Aided Process Engineering. PSE Press, 2025. https://doi.org/10.69997/sct.186066.

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A generally applicable framework for the evaluation of the sustainability of distillation processes is proposed by aligning indicators directly to selected sustainable development goals (SDGs) created by the United Nations. The indicators are related to the goals good health and well-being (SDG 3), clear water and sanitation (SDG 6), affordable and clean energy (SDG 7), decent work and economic growth (SDG 8), industry, innovation and infrastructure (SDG 9), responsible consumption and production (SDG 12), climate action (SDG 13) and life below water (SDG 14). A total of 12 sustainability indi
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Hilleary, Jamey, and Jerry DeWitt. "Monitoring and Measurement Techniques for IR Drop Test Spans." In CORROSION 2013. NACE International, 2013. https://doi.org/10.5006/c2013-02685.

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Abstract The IR drop test span is a specialized cathodic protection test station that is very effective in determining magnitude and direction of DC current flowing on a buried structure. The test span can provide the CP technician with critical information pertaining to current distribution, interference current detection, excessive current loss, and current mapping on protected pipeline structures. The data derived from an IR drop test span is most useful when compiled over a period of time. The technician can use that data to identify trends, changes, and to develop a concise overall profil
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Li, Chenxi, Nilay Shah, Zheng Li, and Pei Liu. "Companies� Operation and Trading Strategies under the Triple Trading and Gaming of Electricity, Carbon Quota and Commodities: A Game Theory Optimization Modeling." In The 35th European Symposium on Computer Aided Process Engineering. PSE Press, 2025. https://doi.org/10.69997/sct.126765.

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Electricity and carbon trading towards carbon reduction are highly coupled. The research on joint trading is essential for helping companies identify optimal strategies and enabling policymakers to detect potential policy loopholes. This study presents a novel game theory optimization model involving both power generation companies (GenCos) and factories to explore optimal operation strategies under electricity-carbon joint trading. By fully capturing the operational characteristics of power generation units and the technical energy consumption of electricity-consuming enterprises, it describe
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Rastegarzadeh, Sina, Samuel Muthusamy, and Jida Huang. "Mechanical Profile and 3D Printability of Cellular Structures." In ASME 2022 17th International Manufacturing Science and Engineering Conference. American Society of Mechanical Engineers, 2022. http://dx.doi.org/10.1115/msec2022-85541.

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Abstract Microstructures are critical elements for mechanical metamaterials design and fabrication. Tailoring the internal microscale structural pattern can achieve a much broader range of bulk properties than the constituent materials, thus enabling the metamaterial design with extraordinary properties. Studying the mechanical properties and fabricability of microstructures is critical for understanding metamaterials’ structural design and macroscale performances. This paper categorizes the commonly designed microstructures into two main classes: deterministic implicit function-based and stoc
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Steele, Robert F., and Sal DellaVilla. "Demand Based Reliability: A Proposed Measurement Approach." In ASME Turbo Expo 2001: Power for Land, Sea, and Air. American Society of Mechanical Engineers, 2001. http://dx.doi.org/10.1115/2001-gt-0525.

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Significant change is taking place in the power generation market. We are witnessing structural change as we move to a deregulated and competitive global market. And we can also see significant technological change, as new products are driven towards improved efficiencies, greater output and environmental friendliness. Measuring the impact of these changes in terms of efficiency, output and reduced emissions is a straightforward exercise, and the ability to judge if the change has been positive is relatively objective. However, these structural and technological changes have created challenges
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Pryor, Owen, Aaron McClung, George Khawly, Joshua Schmitt, and Timothy Allison. "Development of a Power Generation and Economic Model for Micro-Grid Applications." In ASME Turbo Expo 2024: Turbomachinery Technical Conference and Exposition. American Society of Mechanical Engineers, 2024. http://dx.doi.org/10.1115/gt2024-129362.

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Abstract A model has been developed to explore the possibility of creating self-contained micro-grids using a combination of renewable energy and energy storage. The model, written in Python, uses solar and wind availability over the period of interest to estimate the amount of available renewable energy. It then compares the renewable energy generated to a given electric load profile over the same period to determine when to utilize on-site energy storage. The renewable energy calculations are performed using the NREL System Advisor Model for both solar and wind resources. Using a vector anal
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Palacio, Santiago Naranjo, K. Max Zhang, Disha Patel, Megha Basu, and Jason Trager. "Sustainable Communities Case Study: Energy Management Using Demand Response Methods." In ASME 2010 4th International Conference on Energy Sustainability. ASMEDC, 2010. http://dx.doi.org/10.1115/es2010-90265.

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Politicians, activists, business-leaders and engineers alike all agree that future societal progress depends heavily on the development of sustainable cities and communities designed to achieve long-term environmental, social, and economic viability. A key factor that must be considered when planning for sustainable communities is the desirability for living and the productivity potential for industry and research. At the foundation of both is energy — from generation through transmission to consumption. Innovations and novel designs at all levels within a community — from individual buildings
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Roy, Sukanta, and Ujjwal K. Saha. "Numerical Investigation to Assess an Optimal Blade Profile for the Drag Based Vertical Axis Wind Turbine." In ASME 2013 International Mechanical Engineering Congress and Exposition. American Society of Mechanical Engineers, 2013. http://dx.doi.org/10.1115/imece2013-64001.

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Rapid depletion rate of fossil fuels with an increasing energy demand and their high emission are imposing the evolution activities in the arena of renewable energy. To meet the future demands of renewable energy sources, wind energy is a very promising concept. In this feature, the drag based vertical axis wind turbines (VAWTs) are suitable for small scale wind energy generation for decentralized locations. However, these turbines have low power and torque coefficients as compared to other wind turbines. Numerous blade shapes have been proposed till now to improve the performance of these tur
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Kim, Dongsu, Heejin Cho, and Rogelio Luck. "Potential Impacts of Net-Zero Energy Buildings With Distributed Photovoltaic (PV) Power Generation on the Electrical Grid." In ASME 2018 Power Conference collocated with the ASME 2018 12th International Conference on Energy Sustainability and the ASME 2018 Nuclear Forum. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/power2018-7319.

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This study evaluates potential aggregate effects of net-zero energy building (NZEB) implementations on the electrical grid in simulation-based analysis. Many studies have been conducted on how effective NZEB designs can be achieved, however the potential impact of NZEBs have not been explored sufficiently. As significant penetration of NZEBs occurs, the aggregated electricity demand profile of the buildings on the electrical grid would experience dramatic changes. To estimate the impact of NZEBs on the electrical grid, a simulation-based study of an office building with a grid-tied PV power ge
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Reports on the topic "Demand profile generation"

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Steinbuks, Jevgenijs, and Thomas Hertel. Forest, Agriculture, and Biofuels in a Land use model with Environmental services (FABLE). GTAP Working Paper, 2012. http://dx.doi.org/10.21642/gtap.wp71.

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The goal of this paper is to introduce FABLE (Forest, Agriculture, and Biofuels in a Land use model with Environmental services), a dynamic global model, aimed at analyzing the optimal profile for global land use in the context of growing commercial demands for food and forest products, increasing non-market demands for ecosystem services, and more stringent greenhouse gas mitigation targets. The model seeks to determine the optimal allocation of scarce land across competing uses across time. FABLE integrates distinct strands of agronomic, economic and biophysical literatures into a single, in
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Petitet, Marie, and Benjamin Ricaud. How Can Bilateral Contracts Support Electricity Trade? A Regional Electricity Model Perspective for the GCC Plus Egypt, Jordan, and Iraq. King Abdullah Petroleum Studies and Research Center, 2024. http://dx.doi.org/10.30573/ks--2024-dp15.

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Cross-border electricity trading in the Middle East and North Africa (MENA) can provide cost and environmental benefits. However, for historical reasons, electricity trading has not reached a mature stage in this region. Based on a bespoke economic dispatch model for the 2030 horizon, this paper investigates the cost and emission implications of electricity trade in Gulf Cooperation Council (GCC) countries plus Egypt, Jordan, and Iraq. The model adopts an hourly resolution demand profile and considers current and future network interconnections. We focus specifically on the trade between Saudi
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Nimesh, Vikas, Bhaskar Natarjan, Saddam Hussain, and K. N. Hemanth Kumar. CATALYSING THE MARKET TRANSFORMATION OF ELECTRIC 2-WHEELER INSIGHTS FROM CONSUMERS AND STAKEHOLDERS. Alliance for an Energy Efficient Economy (AEEE), 2023. http://dx.doi.org/10.62576/aeee2w.

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Electric two-wheelers (E2Ws) are becoming increasingly popular as an eco-friendly mode of transport. They provide a convenient and efficient option for short-distance travel, particularly in urban areas. However, the widespread adoption of E2Ws in India still faces several challenges. In order to address these issues, the Alliance for an Energy Efficient Economy (AEEE) and International Copper Association India (ICA India) have teamed up to identify the key barriers hindering the adoption of electric two-wheelers in the market. The joint research project aims to identify effective pathways for
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