电力供热一体化系统的分布式鲁棒运行储备量化

Yuqi Xu, Changfei Zhao, C. Wan, Lanxin Shao
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引用次数: 0

摘要

当前,风电渗透率不断提高的不确定性和可变性给电力系统运行带来了新的挑战,对电力系统的运行灵活性和备用能力提出了更高的要求。为了实现电力系统的充足储备,需要将电、热一体化系统中大量的灵活资源集中起来,提供高效的储备能力。在此背景下,我们首先提出了一种运行储备量化方案,用于分析电、热一体化系统的概率储备需求和动态储备能力;然后,利用凸松弛法和多面体逼近法建立了区域供热系统备用容量计算可追溯性的简化模型。提出了一种基于二阶锥对偶的两层迭代算法,得到了一种两阶段分布鲁棒的能量储备调度策略。最后,通过数值仿真验证了该方法的有效性和经济效益。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Distributionally Robust Operating Reserve Quantification of Integrated Electricity and Heating System
Nowadays, the uncertainty and variability of increasing wind power penetration has brought new challenges to electric power system operation, putting forward higher requirements for its operational flexibility and reserve capability. To realize adequate reserve provision for power system, massive flexible resources in integrated electricity and heating system have been aggregated to supply efficient reserve capacity. In this context, we first propose an operating reserve quantification scheme for analyzing both probabilistic reserve requirements and dynamic reserve capability of integrated electricity and heating system; Then, a simplified model is developed through convex relaxation and polyhedral approximation for computational tractability of district heating system reserve capacity. A noval two-layer iterative algorithm based on the second order cone duality is developed to obtain a two-stage distributionally robust energy and reserve scheduling strategy. Finally, numerical simulations are implemented to validate the effectiveness and economic benefits of the proposed approach.
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