Transient Frequency Response Model-Based Energy Storage Optimum Size in Power Systems

Hua Ye, Yanan Tang, Yao Liu, Zekun Li, Z. Qi
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引用次数: 5

Abstract

A method for formulating system frequency response (SFR) model-derived frequency indexes into optimum framework of sizing energy storage systems (ESSs) that participate in frequency control in power systems is presented. A novel simplified SFR model, approximating frequency and governor responses with quadratic and linear functions respectively, is first developed, leading to a fast and accurate computation of the frequency indexes such as frequency deviations. Then, taking the frequency and governor response limit constraints into account, algorithms are proposed to search for optimal size and controller parameters for the ESS during transient frequency control (TFC). The performance of the ESS controllers with optimum parameters (OP) and constant parameters (CP) is evaluated by comparing the frequency and governor responses for wind power fluctuations. The proposed method is found to be more efficient than the CP-based method in attenuating frequency deviations, requiring low energy capacity, and reducing charge/discharge cycles.
基于暂态频率响应模型的电力系统储能最优规模
提出了一种将系统频率响应(SFR)模型衍生的频率指标纳入电力系统参与频率控制的储能系统优化框架的方法。首先建立了一种新的简化SFR模型,分别用二次函数和线性函数逼近频率和调速器响应,从而可以快速准确地计算频率偏差等频率指标。然后,考虑频率和调速器响应极限约束,提出了在暂态频率控制(TFC)过程中搜索ESS最优尺寸和控制器参数的算法。通过比较风力发电波动时的频率响应和调速器响应,评价了最优参数(OP)和恒定参数(CP)下ESS控制器的性能。该方法在衰减频率偏差、对能量容量要求低、减少充放电周期等方面比基于cp的方法更有效。
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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