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Fault ride-through control of grid-connected photovoltaic power plants: A review

机译:并网光伏电站的故障穿越控制:综述

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Over the recent years, the photovoltaic (PV) system generation and integration with utility grid became the most widely used energy resource among other renewable energies worldwide. Thereon, the integration of PV power plants (PVPPs) to the power grid and their dynamics during grid faults had become a critical issue in the new grid codes requirements. In line with this, the fault ride through (FRT) capability control of grid-connected PV power plants (GCPPPs) became the most important issue related to grid codes. In order to fulfill the FRT requirements imposed by grid codes, various approaches have been proposed in the last years. This paper presents an overview and comparison of several FRT capability enhancement approaches during grid fault conditions. A novel feature of this paper is to categorize FRT capability enhancement methods into two main groups depending on the control type and connection configuration including external devices based methods and modified controller based methods and then discuss their advantages and limitations in detail. A comparison between these methods in terms of grid code compliance, controller complexity and economic feasibility are also analyzed in this paper. According to the literature study, the FRT strategies based on external devices can be more effective. However, some of these methods come with significant increased cost. On the other hand, the modified controller-based FRT methods can achieve the FRT requirements at a minimal price. Among various types of control approaches, the modified inverter controller (MIC) is the highly efficient FRT capability approach.
机译:近年来,光伏(PV)系统的产生以及与公用电网的集成成为全球其他可再生能源中使用最广泛的能源。因此,将光伏电站(PVPP)集成到电网及其在电网故障期间的动态特性已成为新的电网法规要求中的关键问题。与此相应,并网光伏电站(GCPPPs)的故障穿越能力(FRT)能力控制已成为与电网规范相关的最重要问题。为了满足电网规范对FRT的要求,最近几年提出了各种方法。本文介绍了电网故障条件下几种FRT能力增强方法的概述和比较。本文的一个新颖特征是根据控制类型和连接配置将FRT功能增强方法分为两大类,包括基于外部设备的方法和基于修改的控制器的方法,然后详细讨论它们的优点和局限性。本文还分析了这些方法在网格代码合规性,控制器复杂性和经济可行性方面的比较。根据文献研究,基于外部设备的FRT策略可能更有效。但是,这些方法中的某些方法会大大增加成本。另一方面,改进的基于控制器的FRT方法可以以最低的价格实现FRT要求。在各种类型的控制方法中,改进的逆变器控制器(MIC)是高效的FRT功能方法。

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