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系统并网技术 ★ 5.0

基于负序电流注入的主动孤岛检测方法

Negative Sequence Current Injection Based Active Islanding Detection Method

作者 Chiranjit Biswas · Soham Chakraborty · Kamakshi Patro · Jyotsna Nain · Abanishwar Chakrabarti · Rakesh Roy
期刊 IEEE Transactions on Industry Applications
出版日期 2024年12月
技术分类 系统并网技术
相关度评分 ★★★★★ 5.0 / 5.0
关键词 孤岛检测 负序电压 并网电压源逆变器 检测系数 仿真实验
语言:

中文摘要

本文提出了一种用于并网电压源逆变器(VSI)的快速准确的主动式孤岛检测方案。在该方案中,VSI 产生一个小的负序电压,以持续向系统注入一个小的负序电流。测量公共耦合点(PCC)的电压,并提取 PCC 电压的负序分量。将 VSI 产生的负序电压与 PCC 处的负序电压相结合,得到一个时不变系数,本文提议将该系数用于孤岛检测。如果仅基于 PCC 处负序电压的幅值进行检测,则必须设置较高的阈值,因为由于电网不平衡和其他暂态事件,PCC 处也可能存在幅值较小的负序电压。在提出的方案中,孤岛检测系数取决于注入的和测量得到的负序电压之间的相似度,因此不依赖于负序电压的绝对幅值。因此,可以注入幅值非常小的负序电流来有效检测孤岛状态,而不会对电能质量产生显著影响。仿真结果表明,所提出的方案在电网电压不平衡或负载不平衡的情况下,即使采集的数据中存在噪声,也是有效的。在实验室样机上进行的实验研究验证了所提出的孤岛检测方案的性能。

English Abstract

This article presents a fast and accurate active islanding detection scheme for a grid-tied voltage source inverter (VSI). In the proposed scheme, the VSI generates a small negative sequence voltage to continuously inject a small negative sequence current into the system. The voltage at the point of common coupling (PCC) is measured and the negative sequence component of PCC voltage is extracted. The negative sequence voltage generated by the VSI and the negative sequence voltage at PCC are combined to yield a time-invariant coefficient, which is proposed here to be used for islanding detection. In case detection is done solely based on the magnitude of negative sequence voltage at PCC, higher threshold has to be set as a small magnitude of negative sequence voltage at PCC may also be present due to grid unbalance and other transient events. In the proposed scheme, the islanding detection coefficient depends on the similarity between the injected and measured negative sequence voltage and hence is not dependent on the absolute magnitude of the negative sequence voltage. Thus a very low magnitude of negative sequence current can be injected to effectively detect islanding conditions without a significant impact on power quality. Simulation results show that the proposed scheme is effective for unbalanced grid voltage, or unbalanced load, even in the presence of noise in acquired data. Experimental studies on a laboratory prototype validate the performance of the proposed islanding detection scheme.
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SunView 深度解读

从阳光电源的并网逆变器产品线角度分析,该负序电流注入型孤岛检测技术具有显著的工程应用价值。传统主动式孤岛检测方法往往需要注入较大扰动信号,这与我们追求的高电能质量目标存在矛盾。该方案通过注入微量负序电流,利用注入信号与PCC点负序电压的相似性构建检测系数,巧妙地将检测依据从绝对幅值转向相关性分析,使得在保证检测灵敏度的同时大幅降低对电网的扰动。

对于阳光电源的光伏并网逆变器和储能变流器产品,这项技术的核心价值在于解决了检测准确性与电能质量之间的固有矛盾。在我们大量部署的分布式光伏电站和工商业储能项目中,电网不平衡工况较为常见,该方案对不平衡电网和负载的鲁棒性,以及对噪声的抗干扰能力,契合了复杂现场环境的实际需求。特别是在欧洲、澳洲等对孤岛保护响应时间要求严格的市场,快速检测特性可增强产品的合规竞争力。

从技术成熟度评估,该方法已完成实验室原型验证,但工程化应用仍需关注几个关键点:一是负序电流注入控制与现有LVRT、电能质量控制策略的协调;二是检测系数阈值在不同电网强度下的自适应整定;三是极弱电网或高阻抗孤岛场景下的检测盲区问题。建议我们的中央研究院可将此技术纳入下一代逆变器控制平台的预研项目,结合公司在电网适应性方面的技术积累,开发具有自主知识产权的增强型孤岛检测算法,进一步巩固在高端逆变器市场的技术领先地位。