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Digital Control Strategy for Single-phase Voltage-Doubler Boost Rectifiers

机译:单相倍压升压整流器的数字控制策略

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摘要

In this paper, a digital controller design procedure is presented for single-phase voltage-doubler boost rectifiers (VDBR). The model derivation of the single-phase VDBR is performed in the s-domain. After that the simplified equivalent z-domain models are derived. These z-domain models are utilized to design the input current and the output dc-link voltage controllers. For the controller design in the z-domain, the traditional K-factor method is modified by considering the nature of the digital controller. The frequency pre-warping and anti-windup techniques are adapted for the controller design. By using the proposed method, the phase margin and the control bandwidth are accurately achieved as required by controller designers in a practical frequency range. The proposed method is applied to a 2.5 kVA single-phase VDBR for Uninterruptible Power Supply (UPS) applications. From the simulation and the experimental results, the effectiveness of the proposed design method has been verified.
机译:本文提出了一种用于单相倍压升压整流器(VDBR)的数字控制器设计程序。单相VDBR的模型推导在s域中执行。之后,得出简化的等效z域模型。这些z域模型用于设计输入电流和输出直流链路电压控制器。对于z域中的控制器设计,考虑到数字控制器的性质,对传统的K因子方法进行了修改。频率预变形和抗饱和技术适用于控制器设计。通过使用所提出的方法,可以在实际频率范围内按控制器设计人员的要求准确地实现相位裕度和控制带宽。所提出的方法应用于不间断电源(UPS)应用的2.5 kVA单相VDBR。通过仿真和实验结果,验证了所提设计方法的有效性。

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