一个评估惯性减小对系统频率响应影响的框架

A. Adrees, P. Papadopoulos, J. Milanović
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引用次数: 26

摘要

本文提出了一个框架来分析可再生能源(RES)的不同渗透水平和随之而来的惯性减少对电网频率的影响。所开发的方法用网络的三种运行条件进行了演示。对于每个运行条件,通过断开一部分同步发电来平衡网络负载的减少。为了建立可再生能源的临界渗透水平和电网频率的惯性限制,模拟了各运行工况下可再生能源发电的负荷不确定性、间歇性和随机模式。结果清楚地确定了RES的临界穿透水平和系统频率稳定的惯性极限的降低。此外,所进行的分析量化了主频率响应和惯性减小对频率最低点的影响。该框架应用于改进后的16机68总线网络。
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A framework to assess the effect of reduction in inertia on system frequency response
This paper presents a framework to analyze the impact of different penetration levels of renewable generation sources (RES) and consequent reduction in inertia on grid frequency. The developed methodology is demonstrated using three operating conditions of the network. For each operating condition, the decrease in the network loading is balanced by disconnecting a part of synchronous generation. To establish the critical penetration levels of renewables and inertia limits for the grid frequency, the uncertainty of loads, intermittent and stochastic patterns of RES generation around each operating condition are simulated. The results clearly identify the critical penetration levels of RES and reduction in inertia limits of the system for frequency stability. In addition, the performed analysis quantifies the effect of primary frequency response and reduction in inertia on frequency nadir. The proposed framework is applied to the modified 16 machine and 68 bus network.
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