电力弹性储备的多周期两阶段随机DER聚合

Yingying Deng, P. Zhou, Yuhao Guo, Bo Wang, H. Hua
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引用次数: 0

摘要

分布式能源的高度普及和能源互联网的发展为配电系统带来了巨大的机遇。虽然单个DER容量和可见性较小,但将各种DER聚合在一起可以为配电系统的运行提供更大的灵活性。针对不同类型的DER,提出了一种考虑运行成本最小化的多周期两阶段DER聚合方法。在日前阶段,聚合器确定聚合后的der进行能源交易的期望功率轨迹和柔性储备的最优区间,并提供给配电系统运营商(DSO)。白天,通过DSO调度信号,聚合器对聚合后的der进行重新优化调度,实现功率调整。针对不确定性,采用条件风险值随机优化方法,实现电力灵活性与降低运行成本之间的权衡。将该方法与使柔性储备区间最大化的传统方法进行了比较。仿真结果表明,该方法的运行成本较低,不可行性仅为0.6%,验证了该方法的高效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-period Two-stage Stochastic DER Aggregation for Power Flexibility Reserve
The high penetration of distributed energy resources (DERs) and the development of the energy internet bring a huge opportunity for distribution system. Although the individual DER capacity and visibility are small, aggregating various DERs can provide more flexibility for distribution system operation. This paper proposes a multi-period two-stage DER aggregation method for different types DERs considering the operating cost minimization. In the day-ahead stage, an aggregator determines the expected power trajectory of the aggregated DERs for energy trading and the optimal interval of flexibility reserve, which are in turn submitted to the distribution system operator (DSO). During the day, with the DSO dispatch signal, the aggregator re-optimizes the scheduling of the aggregated DERs to realize the power adjustment. To handle uncertainty, a stochastic optimization method with conditional value-at-risk is adopted, aiming to achieve the trade-off between power flexibility and operating cost reduction. The proposed method is compared with the conventional method which maximizes the flexibility reserve interval. The simulation results show that the proposed method can achieve a lower operating cost with only 0.6% infeasibility rate, verifying its high efficiency.
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