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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Multi-Input Multi-Output-Based Sliding-Mode Controller for Single-Phase Quasi-Z-Source Inverters
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Multi-Input Multi-Output-Based Sliding-Mode Controller for Single-Phase Quasi-Z-Source Inverters

机译:用于单相Quasi-Z源逆变器的多输入多输出基滑动模式控制器

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摘要

In this article, a multi-input multi-output sliding mode control methodology with constant switching frequency for single-phase quasi-Z-source inverters (qZSI) is proposed. The mathematical model of the entire system is derived in state-space form. The proposed sliding mode control is capable of controlling both dc and ac sides of the system concurrently. Unlike the existing methods, the proposed control does not require proportional-integral controller in the dc-side. Furthermore, it offers several advantages, such as simple implementation, reduced gain requirement, robustness against system parameters, and zero steady-state error in the load voltage. The fixed switching frequency is attained by altering the sliding manifold behavior inside a boundary layer. The power balance equation is used to generate the dc-side inductor current reference. The feasibility of the proposed control method is investigated experimentally when qZSI feeds linear and nonlinear loads.
机译:在本文中,提出了一种具有用于单相准Z源逆变器(QZSI)的恒定开关频率的多输入多输出滑动模式控制方法。整个系统的数学模型以状态空间形式导出。所提出的滑模控制能够同时控制系统的DC和AC侧面。与现有方法不同,所提出的控制在DC侧不需要比例积分控制器。此外,它提供了几种优点,例如简单的实现,降低增益要求,对系统参数的鲁棒性,以及负载电压的零稳态误差。通过改变边界层内的滑动歧管行为来实现固定开关频率。功率平衡方程用于生成DC侧电感器电流参考。当QZSI馈送线性和非线性载荷时,实验研究了所提出的控制方法的可行性。

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