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Modelling and design of single-edge oversampled PWM current regulators using z-domain methods

机译:用Z域方法建模与设计单边过采样PWM电流调节器

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This paper takes a fundamental look at the mechanisms underlying the stability of single-edge pulse-width modulated current regulator loops. The analysis applies to continuous-time or highly oversampled digital current regulators. It is shown that pulse-width modulation is essentially a sampling process. Associated with this sampling process is a small-signal z-domain model of the pulse-width modulator which is used to accurately predict the stability of the control loop. A method for designing the current regulator directly in this z-domain is presented. A technique for delay-less ripple feedback compensation is presented. Finally it is shown how computational and other delays in the loop can be compensated for during the design process.
机译:本文采取了基本的外观,基本的单边脉冲宽度调制电流调节器环的稳定性机制。分析适用于连续时间或高度过采样的数字电流调节器。结果表明,脉冲宽度调制基本上是采样过程。与该采样过程相关联的是脉冲宽度调制器的小信号Z-域模型,用于精确地预测控制回路的稳定性。提出了一种用于直接在该Z域中设计当前调节器的方法。提出了一种延迟延迟纹波反馈补偿的技术。最后,显示了在设计过程中可以补偿环路中的计算和其他延迟。

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