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Small-signal discrete-time modeling of digitally controlled three-phase PWM boost rectifier under balanced voltage

机译:平衡电压下数控三相PWM升压整流器的小信号离散时间建模

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Purpose - The model for digitally controlled three-phase pulse width modulation (PWM) boost rectifiers is a sampled data model, which is different from the continuous time domain models presented in previous studies. The controller, which is tuned according to the model in continuous time domain and discretized by approximation methods, may exhibit some unpredictable performances and even result in unstable systems under some extreme situations. Consequently, a small-signal discrete-time model of digitally controlled three-phase PWM boost rectifier is required. The purpose of this paper is to provide a simple but accurate small-signal discrete-time model of digital controlled three-phase PWM boost rectifier, which explains the effect of the sampling period, modulator and time delays on system dynamic and improves the control performance.
机译:目的-用于数字控制的三相脉冲宽度调制(PWM)升压整流器的模型是一个采样数据模型,与先前研究中介绍的连续时域模型不同。在连续时域中根据模型进行调整并通过近似方法离散化的控制器,可能会表现出某些不可预测的性能,甚至在某些极端情况下会导致系统不稳定。因此,需要数字控制的三相PWM升压整流器的小信号离散时间模型。本文的目的是提供一个简单而准确的数字控制三相PWM升压整流器的小信号离散时间模型,该模型可以解释采样周期,调制器和时间延迟对系统动态的影响,并改善控制性能。

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