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A dual-current-loop control method based on system current detection for LCL-filter-based Active Power Filters

机译:基于系统电流检测的基于LCL滤波器的有源电力滤波器的双电流环控制方法

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A dual-current-loop control method to solve the stability problem of LCL-filter-based shunt Active Power Filters (APF) with no need of additional sensors or damping resistors is proposed here. This method is based on system current detection, rather than load current detection. Making use of the inherent stability characteristic of converter-side current feedback control, the proportional (P) control of converter-side current, as inner loop, is adopted to guarantee the stability, which will not be affected by system parameter variations. The outer loop control of system current adopts the proportional resonant (PR) controller to improve steady-state accuracy. Discrete-time model of the proposed method is derived and analyzed, taking sampling, computation, and PWM output delay into consideration. Compared with the conventional method based on load current detection, the proposed one has no damping loss, higher steady-state accuracy and a much larger phase margin required for a better transient response. All these are verified by simulation results.
机译:本文提出了一种双电流环控制方法,该方法无需额外的传感器或阻尼电阻即可解决基于LCL滤波器的并联有源功率滤波器(APF)的稳定性问题。此方法基于系统电流检测,而不是负载电流检测。利用转换器侧电流反馈控制的固有稳定性特性,采用转换器侧电流的比例(P)控制作为内部环路,以确保稳定性,不受系统参数变化的影响。系统电流的外环控制采用比例谐振(PR)控制器,以提高稳态精度。在考虑采样,计算和PWM输出延迟的前提下,推导并分析了该方法的离散时间模型。与传统的基于负载电流检测的方法相比,所提出的方法没有阻尼损耗,具有更高的稳态精度,并且具有更大的相位裕度,以实现更好的瞬态响应。所有这些都通过仿真结果进行了验证。

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