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Effects of finite switching frequency and delay on PWM controlledsystems

机译:有限开关频率和延迟对PWM控制系统的影响

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The paper examines the effects of (low) switching frequency and delays on a closed loop system with pulse-width modulated (PWM) components. A modeling procedure is described together with analytical formulas. Deviations from standard (idealized) models which replace a PWM unit with a fixed gain are quantified. Low switching frequency reduces the effective PWM gain, and delays make the gain larger than the idealized one at low voltages. The necessary and sufficient condition for existence of a T-periodic stable equilibrium in the closed loop linear system with a PWM is obtained. This result is based on an analysis of a piecewise affine discrete-time map under the assumption of linear-ripple approximation. Experimental results are provided for a PWM controlled dc servo motor, while analytical results are presented for certain examples from the power electronics literature
机译:本文研究了(低)开关频率和延迟对具有脉宽调制(PWM)组件的闭环系统的影响。描述了建模过程以及分析公式。量化了与以固定增益代替PWM单元的标准(理想化)模型的偏差。低开关频率会降低有效的PWM增益,而延迟会使增益大于低电压时的理想增益。获得了在带PWM的闭环线性系统中存在T周期稳定平衡的充要条件。该结果基于线性波纹近似假设下的分段仿射离散时间图的分析。提供了PWM控制的直流伺服电机的实验结果,同时给出了电力电子文献中某些示例的分析结果

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