基于抛物线下垂曲线的分布式能源逆变器频率调节

Shuang Xu, Bo Cao, Hassan A. Hassan, Guanhong Song, Liuchen Chang
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引用次数: 0

摘要

在过去的几十年里,由于可再生能源的丰富和低排放,基于可再生能源的分布式能源(DERs)经历了快速增长。随着可再生der在电力系统中的作用越来越大,由于系统惯性的减小,电网频率特性变得更加柔和。具有调频能力的DER逆变器并网标准和国际电网规范已经出台,期望DER系统通过调节注入电网的有功功率来调节电网频率。因此,可再生der不应在最大功率点运行,可根据设定的斜率增加或减少输出功率,参与调频。传统的频率降控制方法无论频率偏差大小都以相同的速率调节目标功率,未能充分利用DERs中电力电子变换器的快速响应能力。本文提出了一种新的基于抛物线下垂曲线的调频方法,该方法在频率偏差较小时恢复频率较慢,在频率偏差较大时恢复频率较快,更好地发挥了DER逆变器的快速性和灵活性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency Regulation by Distributed Energy Resource Inverters Based on Parabolic Droop Curve
In the last few decades, distributed energy resources (DERs) based on renewables have experienced rapid growth due to the abundance and low emissions of renewable energy. As the role of these renewable DERs grows in power systems, the grid frequency characteristic becomes softer due to the reduced system inertia. Standards and international grid codes have been issued for grid interconnection of DER inverters with frequency regulation capability, which expects DER system to regulate the grid frequency by adjusting the active power injected into the grid. Therefore, the renewable DERs should not operate at maximum power point so it can increase or reduce power output according to the set slope to participate in frequency regulation. Traditional frequency droop control methods adjust the target power at the same rate no matter the frequency deviation is large or small, which does not fully utilize the rapid response of power electronic converters in DERs. This paper proposed a new frequency regulation method based on a parabolic droop curve, which makes better use of the rapidity and flexibility of DER inverters by restoring the frequency slower when the frequency deviation is small and restoring the frequency faster when the frequency deviation is large.
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