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Sampled-data Modeling of PWM Boost Converters in Continuous and Discontinuous Inductor Current Modes

机译:PWM升压转换器在连续和不连续电感器电流模式下的采样数据建模

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When the boost converter operates in continuous and discontinuousinductor current operation modes, owing to the relatively more complicated nature of the boost converter with non-ideal elements, a parsimonious large signal and small signal model for this converter, with and without feedback, is lacking. In this work, a zero order hold (ZOH) equivalent sampled-data (discrete-time) model of the boost converter for computing its small-signal frequency response and closed loop behavior for both large and small signals is developed and experimentally verified. In this model, non-ideal conductive loss effects can also be easily taken into account in continuous and discontinuous inductor current modes. Frequency response computation technique from the model are developed and a Newton-Raphson technique is shown to accelerate the computation of the frequency response. Experimental evaluation of the predicted small-signal frequency response from the model is presented and the computational efficiency of the Newton-Raphson technique is evaluated. Using setpoint perturbations, the ability of the discrete model in capturing nonlinear closed-loop (PI) control performance is demonstrated with experimental confirmation.
机译:当升压转换器以连续和不连续的电流操作模式运行时,由于升压转换器具有非理想元素的升压变换器的性质,因此缺乏具有和无反馈的该转换器的显着大信号和小信号模型。在这项工作中,开发了一个零阶保持(ZOH)等效采样数据(ZOH)等效采样数据(离散时间)用于计算其小信号频率响应和闭环行为的升压转换器,并进行实验验证。在该模型中,在连续和不连续电感器电流模式中也可以容易地考虑非理想导电损耗效果。开发了来自模型的频率响应计算技术,并且示出了牛顿Raphson技术来加速频率响应的计算。提出了对模型预测的小信号频率响应的实验评估,并评估了牛顿Raphson技术的计算效率。使用设定点扰动,通过实验证据证明了分立模型在捕获非线性闭环(PI)控制性能中的能力。

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