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An Improved Repetitive Control Scheme for Grid-Connected Inverter With Frequency-Adaptive Capability

机译:具有频率自适应能力的并网逆变器的改进重复控制方案

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摘要

The power quality of grid-connected inverters has drawn a lot of attention with the increased application of distributed power generation systems. The repetitive control technique is widely adopted in these systems, due to its excellent tracking performance and low output total harmonic distortion (THD). However, in an actual system, the ratio of the sampling frequency to the grid frequency cannot always maintain an integer, and then, the resonant frequencies of the repetitive control technique will deviate from the real grid fundamental and harmonic frequencies. This will degrade the performance of the system, particularly when the grid frequency varies. Even if the ratio is a fixed integer, the auxiliary function for stabilization in the conventional repetitive control technique will also increase the steady-state tracking error and THD of the system. In this paper, an improved repetitive control scheme with a special designed finite impulse response (FIR) filter is proposed. The FIR filter cascaded with a traditional delay function can approximate the ideal repetitive control function of any ratio. The proposed scheme varies the FIR filter according to varied grid frequency and maintains its resonant frequencies matching the grid fundamental and harmonic ones. Finally, the simulation and experimental results show that the improved repetitive control scheme can effectively reduce the tracking error and compensate harmonics of the inverter systems.
机译:随着分布式发电系统的日益广泛的应用,并网逆变器的电能质量引起了很多关注。重复控制技术因其出色的跟踪性能和低输出总谐波失真(THD)而在这些系统中被广泛采用。然而,在实际系统中,采样频率与电网频率之比不能总是保持整数,因此,重复控制技术的谐振频率将偏离实际电网的基频和谐波频率。这将降低系统的性能,尤其是当电网频率变化时。即使比率是一个固定的整数,传统的重复控制技术中用于稳定的辅助功能也会增加系统的稳态跟踪误差和THD。本文提出了一种带有特殊设计的有限脉冲响应(FIR)滤波器的改进的重复控制方案。与传统延迟函数级联的FIR滤波器可以近似于任何比率的理想重复控制函数。所提出的方案根据变化的电网频率来改变FIR滤波器,并使其谐振频率保持与电网基频和谐波频率相匹配。最后,仿真和实验结果表明,改进的重复控制方案可以有效地减小跟踪误差并补偿逆变器系统的谐波。

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