An Inner-Loop Control Method for the Filter-less, Voltage Sensor-less, and PLL-less Grid-Following Inverter-Based Resource

Bokang Zhou, Yuchen He, Yuntao Zou, Yuan Li, F. Peng
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引用次数: 10

Abstract

This paper presents an inner-loop control method for the filter-less, voltage sensor-less, and PLL-less inverter-based resource (IBR) under grid-following operation mode. The innovative concepts of the proposed control structure incorporate the removal of the voltage sensors at the point of common coupling (PCC), the removal of the inverter output filter or interface inductance, and the removal of the traditional phase-locked loop (PLL) circuits. Furthermore, the virtual impedance control is applied to compensate for the inverter voltage reference change due to the removal of the interface inductance. With the proposed control method, the physical interface inductor and the bulky high-voltage sensors can be offloaded, but the inverter can still synchronize with the grid and respond to the control command with fast speed and small steady state error.
一种基于无滤波器、无电压传感器和无锁相环的电网跟踪逆变器资源的内环控制方法
本文提出了一种在电网跟随工作模式下的无滤波器、无电压传感器、无锁相环逆变器资源(IBR)的内环控制方法。所提出的控制结构的创新概念包括在共耦合(PCC)点去除电压传感器,去除逆变器输出滤波器或接口电感,以及去除传统的锁相环(PLL)电路。在此基础上,利用虚拟阻抗控制补偿了由于接口电感的去除而引起的逆变器基准电压的变化。该控制方法可以减轻物理接口电感和笨重的高压传感器的负担,但逆变器仍能与电网同步,并以快的速度和小的稳态误差响应控制命令。
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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