Impact of fast primary regulation and synthetic inertia on grid frequency control

S. Canevese, A. Iaria, M. Rapizza
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引用次数: 15

Abstract

This paper is a preliminary study, based on control theory tools, of the impact of new grid frequency regulation services on power system dynamic behaviour. In particular, fast primary frequency control and synthetic inertia are considered. The first objective is to assess whether, for high penetration levels of these two new regulations, system asymptotic stability is lost; the second is to study the sensitivity of performance indicators of frequency dynamics, such as the steady-state frequency deviation, the initial Rate Of Change Of Frequency (ROCOF), the maximum frequency deviation and the time of its occurrence, in the presence of large disturbances. The analysis is performed considering a single bus-bar model, first of a fictitious test system and then of the Sardinian power system. It is shown that the fast primary control has a predominant role to determine the maximum frequency deviation, while synthetic inertia mainly affects the initial ROCOF and the time of the maximum frequency error after the perturbation.
快速一次调节和综合惯性对电网频率控制的影响
本文基于控制理论工具,初步研究了新型电网调频业务对电力系统动态特性的影响。特别考虑了快速一次频率控制和综合惯性。第一个目标是评估在这两个新规则的高渗透水平下,系统是否会失去渐近稳定性;二是研究频率动力学性能指标,如稳态频率偏差、初始频率变化率(ROCOF)、最大频率偏差及其发生时间等在较大扰动存在下的灵敏度。首先对一个虚构的测试系统进行分析,然后对撒丁岛电力系统进行分析。结果表明,快速一次控制对最大频率偏差的确定起主导作用,而综合惯性主要影响扰动后的初始roof和最大频率误差出现的时间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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