并网跟随光伏逆变器角稳定性分析

Ramkrishna Mishan
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引用次数: 0

摘要

分布式发电机(DG)在现代电网中的高渗透造成了角度、电压和频率的不稳定。文献中的大多数工作都集中在单个并网逆变器的小信号稳定性分析上,而没有深入研究并网逆变器在大干扰和相互作用下的暂态稳定性。为了解决这些挑战,本文研究了一组电网跟随电流源逆变器的瞬态角稳定性。在低惯性弱电网环境下,随网逆变器可能因故障和大信号干扰而失去同步。对故障前、故障接通轨迹和故障后的电压注入角进行了比较,并对关键故障清除时间进行了评估,这直接关系到聚合电网跟随逆变器的均匀性。结果表明,由于线路阻抗和视在功率值的巨大差异,一些逆变器比其他逆变器更快地失去同步。此外,具有高视在功率的逆变器由于最大电流限制更容易失去同步,导致共耦合点的电压降低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Angular Stability Analysis of Parallel Connected Grid-following PV Inverters
High penetration of distributed generators (DG) in modern power grids creates angle, voltage, and frequency instabilities. Most of the work in the literature has focused on small-signal stability analysis of single grid-connected inverters without thoroughly investigating their transient stability for large disturbances and interactions between parallel-connected inverters. To address these challenges, this paper examines the transient angular stability of a cluster of grid-following current source inverters. In a low inertia weak grid environment, grid-following inverters may lose synchronism due to faults and large-signal disturbances. A comparison of the voltage injection angle for pre-fault, fault-on trajectory, and post-fault conditions is performed, and an evaluation of the critical fault clearing time is directly related to the uniformity of the aggregated grid-following inverters. The results show that some inverters lose synchronism more quickly than others due to considerable variances in line impedances and apparent power values. Additionally, inverters with high apparent power are more susceptible to losing synchronism due to the maximum current limit, causing the voltage at the point of common coupling to decrease.
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