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A PI Control Algorithm of Three-Level APF With Little Static Misadjustment For Tracking Harmonic Current

机译:三级APF的PI控制算法,跟踪谐波电流的静态误解

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Obviously, tracking harmonic current fast and precisely is one of the keys to design the APF. This paper researches the control method of three-level active power filters. The conventional current state feedback decoupling PI control is analyzed in this paper in detail. This paper pointes out the limitation of the conventional PI conditioner in the research field of APF and presents a novel PI control method. Canceling the delay of one sampling period and the misadjustment for tracking the harmonic current is key problem of this PI control. In this PI control, the predictive output current value is obtained by the state predictor. The delay of one sampling period is remedied in this digital control system by the state predictor. The predictive harmonic command current value is obtained by the repetitive predictor synchronously. The repetitive predictor can achieve better prediction of the harmonic current. By this means, the misadjustment of the conventional PI control for tracking the harmonic current is cancelled. The experiment results indicate that the steady-state accuracy and dynamic response are both satisfying when the proposed control scheme is implemented.
机译:显然,快速跟踪谐波电流是设计APF的键之一。本文研究了三级有源电力滤波器的控制方法。详细分析了传统的电流反馈去耦PI控制。本文指出了APF的研究领域中传统PI调节剂的限制,并提出了一种新型PI控制方法。取消一个采样周期的延迟和跟踪谐波电流的误解是该PI控制的关键问题。在该PI控制中,通过状态预测器获得预测输出电流值。通过状态预测器在该数字控制系统中对一个采样周期的延迟弥补。通过重复预测器同步地获得预测谐波命令电流值。重复预测器可以实现更好地预测谐波电流。通过这种方式,取消了用于跟踪谐波电流的传统PI控制的误解。实验结果表明,当实施所提出的控制方案时,稳态精度和动态响应都是令人满意的。

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