Experimental Validation of Active Filter Functionality for Distributed Photovoltaic Farms

Grazia Todeschini;Atheer Habash;Jacob Lynch;Zia Emin
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Abstract

Power electronics-interfaced devices, including photovoltaic (PV) panels, wind generators, and energy storage, are being installed at a fast pace across the electrical grid. Their control system can be programmed to perform a variety of ancillary services. Assessment of these features and their impact on power system operation requires detailed simulations and experimental validation. This article aims at presenting and verifying a control strategy where PV inverters are used as AFs. The innovative aspects of the proposed approach are: the use of detailed network data to represent the behavior of the inverter under real operating conditions, the design of control features to ensure that inverter and transformer ratings are not exceeded, and the assessment of using different measurement points to detect harmonic currents. The article presents the structure of the proposed algorithm, simulation results, and the steps undertaken to carry out the experimental validation.
分布式光伏电站有源滤波器功能的实验验证
电力电子接口设备,包括光伏(PV)面板、风力发电机和能源存储,正在电网中快速安装。他们的控制系统可以被编程来执行各种辅助服务。评估这些特征及其对电力系统运行的影响需要详细的模拟和实验验证。本文旨在提出并验证光伏逆变器作为af的控制策略。提出的方法的创新之处在于:使用详细的网络数据来表示逆变器在真实运行条件下的行为,设计控制特征以确保逆变器和变压器的额定值不被超过,以及使用不同测量点检测谐波电流的评估。本文介绍了所提出算法的结构、仿真结果以及进行实验验证的步骤。
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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