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Microprocessor based robust digital control for UPS with three-phase PWM inverter

机译:带有三相PWM逆变器的UPS基于微处理器的鲁棒数字控制

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This paper describes a novel method of robust (insensitive to system parameter variations and load current changes) and fast digital control for an uninterruptible power supply (UPS) with a three-phase PWM inverter. The purpose of this paper is to propose a method by which characteristics better than those by conventional methods are obtained using an algorithm simpler than that of conventional methods. The experiments show that the purpose is achieved and the proposed method offers a total harmonic distortion of 0.6% of the output voltage waveform at a full nonlinear load. The analysis shows that the stability of the method is sufficient. Three features of the method are: (a) a capacitor current observer for stabilization and a disturbance observer for robustness are used to compensate the time lag by the computation and the disturbances, in a minor loop of the capacitor current through an inductor-capacitor filter of the inverter; (b) new models of the inverter and the disturbances are established to simplify these observers; and (c) the output voltage control loop can be designed easily and exactly because the minor loop realizes a rapid and robust control of the current.
机译:本文介绍了一种新颖的方法,该方法对带有三相PWM逆变器的不间断电源(UPS)具有鲁棒性(对系统参数变化和负载电流变化不敏感)和快速数字控制。本文的目的是提出一种方法,通过该方法使用比常规方法更简单的算法来获得优于常规方法的特性。实验表明,达到了目的,所提出的方法在完全非线性负载下提供了总输出电压波形的0.6%的总谐波失真。分析表明该方法具有足够的稳定性。该方法的三个特征是:(a)在通过电感电容滤波器的电容电流的较小环路中,通过电容器电流观测器的稳定化和干扰鲁棒性的计算和干扰来补偿时滞。逆变器的(b)建立新的逆变器模型和干扰,以简化这些观测器; (c)由于次回路实现了对电流的快速而稳定的控制,因此可以轻松,准确地设计输出电压控制回路。

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