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Plug-In Repetitive Control Strategy for High-Order Wide-Output Range Impedance-Source Converters

机译:高阶宽输出范围阻抗源转换器的插件重复控制策略

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摘要

High-order wide-output (HOWO) impedance-source converters (ISCs) have been presented for ac inverter applications that require voltage step-up ability. With intrinsic passive impedance networks as energy sources, these converters are able to achieve voltage boosting with either polarity, leading to improved dc-link voltage utilization compared with the conventional two-level converter. However, HOWO-ISCs suffer from transfer functions giving low bandwidth, a penalty of increased passive devices and right-half-plane zeros, which result in lower order distortion of the ac output power. In this paper, a modified plug-in repetitive control scheme is presented for HOWO-ISCs with accurate reference tracking (hence low distortion), fast dynamic response, and enhanced robustness. By using zero-phase-shift finite impulse response filters in both the internal model of the repetitive controller and its compensation network, the proposed method achieves zero steady-state error and an extended closed-loop bandwidth. For HOWO-ISC cases, this method outperforms conventional proportional-integral (PI) control, which has considerable steady-state error. It also eliminates the need of parallel loops for several frequencies when proportional resonant control or orthogonal transformation-based PI schemes are used to remove lower order distortion. The design process and performance analysis of the proposed repetitive control strategy are based on a novel three-phase HOWO-ISC configuration with a reduced number of switches. Simulation and experimental results confirm the feasibility and effectiveness of the proposed control approach.
机译:已经提出了高阶宽输出(HOWO)阻抗源转换器(ISC),用于需要升压能力的交流逆变器应用。这些转换器使用固有的无源阻抗网络作为能源,能够实现任一极性的升压,与传统的两电平转换器相比,可提高直流链路的电压利用率。但是,HOWO-ISC的传递函数具有带宽低,无源设备增加和右半平面零的缺点,这会导致交流输出功率的低阶失真。本文提出了一种针对HOWO-ISC的改进的插件重复控制方案,该方案具有精确的参考跟踪(因此失真小),快速的动态响应和增强的鲁棒性。通过在重复控制器的内部模型及其补偿网络中使用零相移有限冲激响应滤波器,该方法可实现零稳态误差和扩展的闭环带宽。对于HOWO-ISC情况,此方法优于常规的比例积分(PI)控制,后者具有相当大的稳态误差。当使用比例共振控制或基于正交变换的PI方案来消除低阶失真时,它也消除了针对多个频率的并行环路的需求。所提出的重复控制策略的设计过程和性能分析基于具有减少的开关数量的新型三相HOWO-ISC配置。仿真和实验结果证实了该控制方法的可行性和有效性。

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