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Anti-Windup Action in Inverters Control of Distributed Generation Photovoltaic Systems

机译:分布式发电光伏系统逆变器控制中的抗风化作用

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With the constant increase of the use of photovoltaic systems in Distributed Generation (DG), it becomes increasingly necessary to study strategies that guarantee not only that the systems remain connected during electrical faults, but also that shows a good post-fault recovery performance. In fault conditions, the operating limits of the converters are typically reached, which can cause the associated controllers to windup, which may affect the final performance of the system dynamics. This paper presents an anti-windup strategy for the inverter control loops with the focus on the DC link voltage and reactive power control performance. The anti-windup strategy was simulated for the case of a 500-kW photovoltaic generation system. The anti-windup actions showed to improve post-fault performance by reducing the recovery time and eliminating large peaking variations of voltage, current, and active power. Besides, it also showed to avoid large and sudden variations of both DC link voltage and MPPT control action after fault clearance.
机译:随着分布式发电系统(DG)中光​​伏系统使用的不断增加,研究策略的需求变得越来越重要,这些策略不仅可以确保在电气故障期间保持系统连接,而且还具有良好的故障后恢复性能。在故障情况下,通常会达到转换器的运行极限,这可能导致关联的控制器出现故障,这可能会影响系统动力学的最终性能。本文提出了一种针对逆变器控制环路的抗饱和策略,重点是直流母线电压和无功功率控制性能。针对500 kW光伏发电系统的情况,模拟了抗饱和策略。通过减少恢复时间并消除电压,电流和有功功率的较大峰值变化,抗饱和动作可以提高故障后的性能。此外,它还显示了避免故障清除后直流母线电压和MPPT控制动作的突然大变化。

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