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Active Cross-Correlation Anti-Islanding Scheme for PV Module-Integrated Converters in the Prospect of High Penetration Levels and Weak Grid Conditions

机译:高穿透水平和弱电网条件下光伏组件集成转换器的主动互相关抗孤岛方案

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摘要

This paper introduces a new cross-correlation anti-islanding detection scheme for module-integrated converters (MICs) with pseudo dc-link. The proposed scheme periodically injects a second-order harmonic current component of low magnitude (in open-loop mode) and evaluates grid response by means of correlation. The proposed scheme is highly reliable, providing nondetection-zone free operation, fast detection, and compliance with the relevant power quality and anti-islanding standards. Additionally, it excels in lower computational cost, reduced fault detection zone, and higher output power quality, compared to the referenced anti-islanding schemes that are compatible with MICs. Last but not least, it can be implemented in MIC platforms without requiring an output current sensor, being an easily upgradable solution in software level. A firm theoretical framework that considers both high penetration levels of PV systems and weak grid conditions is also included in this paper. The theoretical framework, as well as the effectiveness of the proposed scheme, is verified through extensive experimental results for various electrical-network parameters and nonlinear loading conditions. Finally, a comprehensive comparison between the proposed method and the most common anti-islanding techniques (compatible with MICs) is performed, leading to some valuable conclusions from MICs perspective.
机译:本文介绍了一种新的针对具有伪直流链路的模块集成转换器(MIC)的互相关抗孤岛检测方案。所提出的方案周期性地注入低幅度的二阶谐波电流分量(在开环模式下),并通过相关性评估电网响应。所提出的方案是高度可靠的,提供无检测区的无操作,快速检测,并符合相关的电能质量和防孤岛标准。此外,与参考的与MIC兼容的防孤岛方案相比,它在较低的计算成本,减少的故障检测区域和较高的输出功率质量方面表现出色。最后但并非最不重要的一点是,它可以在MIC平台中实现而无需输出电流传感器,这是软件级别上易于升级的解决方案。本文还包括一个牢固的理论框架,该框架同时考虑了光伏系统的高渗透水平和弱电网条件。通过针对各种电网参数和非线性负载条件的大量实验结果,验证了所提出方案的理论框架以及有效性。最后,对建议的方法与最常用的防孤岛技术(与MIC兼容)进行了全面比较,从MIC角度得出了一些有价值的结论。

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