考虑动态激励需求响应的微电网两阶段优化调度

Ruiguang Ma, Chaofeng Cheng, Chuan Long, Da Li, Liyang Liu, Qingzhu Zeng
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引用次数: 3

摘要

针对微网风电、光伏出力和负荷大小的不确定性,从日前和实时两阶段出发,建立了微网两阶段优化调度模型。在日前调度阶段,建立了基于微网最优总运行成本的经济调度模型;基于日前调度优化结果,实时调度阶段考虑了实时优化调度中各电源的出力调整顺序,提出了基于动态激励的需求响应(IBDR)参与的实时滚动优化策略。该策略的激励价格和用户参与能力随着时间尺度的推移呈现动态变化,旨在利用价格引导用户增加对需求响应的参与。最后,计算实例表明,动态激励模型需求响应与传统激励模型需求响应相比,不仅可以提高日前并线计划的跟踪效果,而且可以更好地消除微网的日前预测误差。可显著提高用户收入,有效降低系统运行成本,为市场化微网优化运行提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Two-Stage Optimal Dispatching for Microgrid Considering Dynamic Incentive-Based Demand Response
Aiming at the uncertainty of wind power, photovoltaic output and load size in microgrid, starting from the two stage of day-ahead and real-time, a two-stage optimal dispatching model of microgrid was established. In the day-ahead dispatching stage, an economic dispatching model based on the optimal total operation cost of microgrid is established; Based on the results of day ahead scheduling optimization, the real-time scheduling stage considers the output adjustment sequence of each power supply in real-time optimization scheduling, and proposes a real-time rolling optimization strategy with dynamic incentive-based demand response(IBDR) participation. The incentive price and user's participation capacity of the strategy presents dynamic changes with time scale moving forward, aiming to use price to guide users to increase their participation in demand response. Finally, a calculation example shows that dynamic incentive model demand response compared with traditional incentive model demand response can not only improve the tracking effect of the day-ahead tie line plan, but also better eliminate the day-ahead prediction error of the microgrid. It can significantly improve the user's income and effectively reduce the system operation cost, which provides a reference for the optimal operation of the market-oriented microgrid.
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