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Reliability constrained generation expansion planning with consideration of wind farms uncertainties in deregulated electricity market

机译:考虑放宽电力市场中风电场不确定性的可靠性约束发电计划

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This paper addresses reliability constrained generation expansion planning (GEP) in the presence of wind farm uncertainty in deregulated electricity market. The proposed GEP aims at maximizing the expected profit of all generation companies (GENCOs), while considering security and reliability constraints such as reserve margin and loss of load expectation (LOLE). Wind farm uncertainty is also considered in the planning and GENCOs denote their planning in the presence of wind farm uncertainty. The uncertainty is modeled by probability distribution function (PDF) and Monte-Carlo simulation (MCS) is used to insert uncertainty into the problem. The proposed GEP is a constrained, nonlinear, mixed-integer optimization programming and solved by using particle swarm optimization (PSO) method. In this paper, Electricity market structure is modeled as a pool market. Simulation results verify the effectiveness and validity of the proposed planning for maximizing GENCOs profit in the presence of wind farms uncertainties in electricity market.
机译:本文针对在电力市场放松管制下存在风电场不确定性的情况,研究了可靠性受限的发电扩展计划(GEP)。拟议的GEP旨在最大程度地提高所有发电公司(GENCO)的预期利润,同时考虑安全和可靠性约束,例如备用保证金和预期负载损失(LOLE)。规划中还考虑了风电场的不确定性,GENCO表示存在风电场不确定性时的规划。通过概率分布函数(PDF)对不确定性进行建模,并使用蒙特卡洛模拟(MCS)将不确定性插入问题中。提出的GEP是一种受限的,非线性的,混合整数的优化程序,并通过使用粒子群算法(PSO)来求解。在本文中,电力市场结构被建模为一个联合市场。仿真结果验证了在电力市场存在风电场不确定性的情况下,最大化发电公司利润的拟议计划的有效性和有效性。

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