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Impacts of High Penetration Wind Generation and Demand Response on LMPs in Day-Ahead Market

机译:日前市场中高渗透率风力发电和需求响应对LMP的影响

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Environmental issues in power systems operation lead to a rapid deployment of renewable wind generations. Wind generation is usually given the highest priority by assigning zero or negative energy bidding prices in the day-ahead power market, in order to effectively utilize available wind energy. However, when congestions occur, negative wind bidding prices would aggravate negative locational marginal prices (LMPs) in certain locations. The paper determines the proper amount of demand response (DR) load to be shifted from peak hours to off peaks under the Independent System Operator's (ISO) direct load control, for alleviating transmission congestions and enhancing the utilization of wind generation. The proposed mixed-integer linear programming (MILP) model is to minimize the total operation cost while incorporating explicit LMP formulations and non-negative LMP requirements into the network-constrained unit commitment (NCUC) problem, which are derived from the Karush-Kuhn-Tucker (KKT) optimality conditions of the economic dispatch (ED) problem. Numerical case studies illustrate the effectiveness of the proposed model.
机译:电力系统运行中的环境问题导致可再生风力发电的快速部署。通常,通过在日间电力市场中分配零或负的能源投标价格,将风力发电放在首位,以有效利用可用的风能。但是,当拥堵发生时,负的风电竞标价格会加剧某些位置的负位置边际价格(LMP)。本文确定了在独立系统运营商(ISO)直接负载控制下将适当的需求响应(DR)负载量从高峰时段转移到非高峰时段,以减轻传输拥挤并提高风力发电的利用率。拟议的混合整数线性规划(MILP)模型是为了最大程度地降低总运营成本,同时将明确的LMP公式和非负LMP要求合并到网络约束的单位承诺(NCUC)问题中,该问题源自Karush-Kuhn-塔克(KKT)经济调度(ED)问题的最优条件。数值案例研究说明了该模型的有效性。

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