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Optimal proportion of wind and PV capacity in provincial power systems based on bilevel optimization algorithm under low-carbon economy 被引量:11

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摘要 In order to boost contributions of power systems to a low-carbon economy,the installed capacity of renewable power generation,such as wind and photovoltaic(PV)power generation should be well planned.A bilevel formulation is presented to optimize the proportion of wind and PV capacity in provincial power systems,in which,carbon emissions of generator units and features of renewable resources are taken into account.In the lowerlevel formulation,a time-sequence production simulation(TSPS)model that is suitable for actual power system has been adopted.In order to maximize benefits of energy conservation and emissions reduction resulting from renewable power generation,the commercial software called General Algebraic Modeling System(GAMS)is employed to optimize the annual operation of the power system.In the upper-level formulation,the optimal pattern search(OPS)algorithm is utilized to optimize the proportion of wind and PV capacity.The objective of the upper-level formulation is to maximize benefits of energy conservation and carbon emissions reductions optimized in the lowerlevel problem.Simulation results in practical provincial power systems validate the proposed model and corresponding solving algorithms.The optimization results can provide support to policy makers to make the polices related to renewable energy.
出处 《Journal of Modern Power Systems and Clean Energy》 SCIE EI 2015年第1期33-40,共8页 现代电力系统与清洁能源学报(英文)
基金 This work is jointly supported by the research and application of evaluation of priority dispatching of wind/PV generation in multi-levels,State Grid Corporation of China(No.NY71-14-038) Jiangsu Provincial Graduate Education Innovation Project(No.KYLX_0431) the Fundamental Research Funds for the Central Universities(No.2014B33314) National Nature Science Foundation of China(No.51407097).
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