考虑分布式能源时间波动特性的配电系统可靠性评估

Bo Wang, Wei Guo, Liwei Qiao, Ziqing Zou, Dechun Zang, Yiqing Zhang
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引用次数: 0

摘要

随着有功配电网的不断发展,大量的分布式能源接入给配电网供电可靠性带来了新的挑战。分布式能源接入后的配电网供电可靠性评估显得尤为重要。本文提出了一种伪序贯蒙特卡罗仿真方法,用于评估由风扇、光伏电池和蓄电池组成的配电网的可靠性指标。采用非顺序蒙特卡罗方法对系统状态进行采样。只有对故障过程进行序贯蒙特卡罗模拟,才能快速准确地获得配电网的可靠性指标,适用于未来分布式能源大量接入后的大规模电网。在序贯仿真过程中,同时考虑了微网运行、分布式能源利用策略和最优减载策略。IEEE RBTS-BUS6馈线4系统仿真验证了该方法的有效性,并分析了分布式能源接入对配电网可靠性指标的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability Evaluation of Distribution System Considering Temporal Fluctuation Characteristics of Distributed Energy Sources
With the continuous development of the active distribution network, a large number of distributed energy access brings new challenges to the distribution network power supply reliability. It is particularly important to evaluate the distribution network power supply reliability after the distributed energy access. In this paper, a pseudo-sequential Monte Carlo simulation method is proposed to evaluate the reliability index of distribution network with fans, photovoltaic cells and batteries. The system state is sampled by non-sequential Monte Carlo method. Only the sequential Monte Carlo simulation of the fault process can quickly and accurately obtain the reliability index of the distribution network, which is suitable for large-scale networks after a large number of distributed energy access in the future. In the process of sequential simulation, micro-grid operation, distributed energy use strategy and optimal load shedding strategy are considered simultaneously. IEEE RBTS-BUS6 feeder 4 system simulation verifies the availability of the method and analyzes the impact of distributed energy access on the reliability index of distribution network.
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