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首页> 外文期刊>Generation, Transmission & Distribution, IET >Coordination of wind generation and demand response to minimise operation cost in day-ahead electricity markets using bi-level optimisation framework
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Coordination of wind generation and demand response to minimise operation cost in day-ahead electricity markets using bi-level optimisation framework

机译:使用双层优化框架协调风力发电和需求响应,以在日间电力市场中将运营成本降至最低

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Demand response (DR) can play an important role when dealing with the increasing variability of renewables in power system. This study proposes a bi-level market model for wind-integrated electricity market, where the DR requirement is paired with the wind profile to deal with wind variability. At the upper level, an electricity market operator aims to minimise the day-ahead operation cost considering plausible wind generation scenarios. At the lower level, the DR exchange operator aims to maximise social welfare by trading aggregated DR among several aggregators. The solution at this level determines the optimal DR amount and price setting for each aggregator. The DR from the flexible loads is modelled from the end-users' perspective considering their willingness parameter. The market model is formulated as a bi-level optimisation problem using Lagrangian relaxation with Karush-Kuhn-Tucker optimality conditions. The effectiveness of the proposed scheme is demonstrated on sample 4-bus and IEEE 24-bus systems. Different scenarios such as high, medium and low levels of wind and DR are investigated. The high-wind low-DR scenario leads to minimum operation cost and is least inconvenient for end users as it sets the DR at a minimum level while keeping the higher levels of wind generation.
机译:在应对电力系统中可再生能源日益增加的可变性时,需求响应(DR)可以发挥重要作用。这项研究为风能集成电力市场提出了一个两级市场模型,在该模型中,DR要求与风能曲线配对以应对风的可变性。在较高层次上,电力市场运营商旨在考虑合理的风力发电情景,以尽量减少日间运营成本。在较低级别,DR交换运营商旨在通过在多个聚合器之间交易聚合的DR来最大化社会福利。此级别的解决方案确定每个聚合器的最佳DR数量和价格设置。考虑最终用户的意愿参数,从最终用户的角度对柔性负载的DR进行建模。使用拉格朗日松弛和Karush-Kuhn-Tucker最优性条件,将市场模型表述为双层优化问题。在示例4总线和IEEE 24总线系统上证明了该方案的有效性。研究了不同的场景,例如高,中,低水平的风和DR。高风低DR方案导致最低的运营成本,并且对于最终用户而言最不方便,因为它将DR设置为最低水平,同时又保持了较高的风力发电水平。

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