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Decreasing quantization effects in a buck converter controlled by GZAD strategy

机译:降低由GZAD策略控制的Buck转换器中的量化效应

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ZAD strategy has been widely analyzed in the last decade to control buck power converters. The first models were ideals; as consequence of these numerical and experimental results did not agree. The discrepancy between both of the results is probably due to the sensitivity of the ZAD strategy to compute the duty cycle. In the present work the inductor internal resistance and the quantization effects are included in the converter model. The effect of the inductor internal resistance is to move the stability limit to the left while the qualitative behavior is preserved. The quantization has a high incidence in the dynamics. In this paper we present a strategy to decrease the quantization effects in a buck converter controlled by Digital-PWM based on Zero Average Dynamics on Error (ZAD). The quantization errors are introduced by analog-to-digital converters and Digital-PWM, producing undesirable behavior. We present a methodology to decrease these errors, first using Generalized ZAD and after, computing the duty cycle as the mean of the actual and previous duty cycles. These actions diminish drastically the error and limit cycling oscillations.
机译:在过去的十年中,ZAD策略已被广泛分析以控制降压电源转换器。最初的模型是理想的;这些数值和实验结果的结果并不一致。两个结果之间的差异可能是由于ZAD策略计算占空比的敏感性所致。在目前的工作中,电感器内部电阻和量化效应都包含在转换器模型中。电感器内部电阻的作用是将稳定性极限向左移动,同时保留了定性行为。量化在动力学方面具有很高的发生率。在本文中,我们提出了一种基于零平均动态误差(ZAD)来降低由Digital-PWM控制的降压转换器中的量化效应的策略。量化误差由模数转换器和Digital-PWM引入,从而产生不良行为。我们提出一种减少这些误差的方法,首先使用Generalized ZAD,然后将占空比计算为实际占空比和先前占空比的平均值。这些动作大大减少了误差并限制了循环振荡。

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