基于电压稳定指标的送端系统集成可再生能源同步电容配置策略

Yanhe Li, Z. Cao, Zhen Zhang, Bingtuan Gao, Jinyuan Fang
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引用次数: 1

摘要

大规模的可再生能源并入电力系统将导致暂态电压不稳定。研究了一种集成可再生能源模型的送电端同步电容器的容量配置,以提高其暂态电压稳定性。在概述了输电系统概况和同步冷凝器模型的基础上,提出了结合暂态电压稳定性和暂态电压不稳定风险的高渗透可再生能源输电系统暂态电压稳定综合指标。暂态电压稳定指数以暂态电压的最大值、最小值和持续时间来衡量,暂态电压不稳定风险指数以时间-电压面积来衡量。以提出的综合指标为优化目标,以经济成本为优化目标,建立了同步凝汽器容量配置的优化模型,并用复杂求解器进行了求解。最后,对可再生能源高渗透的高压直流发送端系统进行了实例研究验证。仿真结果表明,优化后的同步电容器容量配置能有效提高系统的暂态电压稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Voltage Stability Index based Synchronous Condenser Capacity Configuration Strategy of Sending EndSystem Integrated Renewable Energies
Large-scale renewable energy integrated to the power system will lead to transient voltage instability. This paper investigates capacity configuration of synchronous condenser for a sending end system integrated renewable energy model to improve its transient voltage stability. Following the overview of the sending end system and model of synchronous condenser, two comprehensive index of transient voltage stability for sending end system integrated with high penetration renewable energy are proposed, which combines both transient voltage stability and transient voltage instability risk. The transient voltage stability index is measured by the maximum and minimum value and duration of the transient voltage, and the transient voltage instability risk index is measured by the time-voltage area. Considering the proposed comprehensive index together with the economic cost as optimization objective, an optimization model is formulated to configurate the capacity of synchronous condenser, which is solved with Cplex solver. Finally, the case study verification is carried out on a high voltage direct current based sending end system with high penetration of renewable energies. Simulation results verify that the optimized capacity configuration of synchronous condenser can improve transient voltage stability of the system effectively.
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