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Small-Signal Discrete-Time Modeling of Digitally Controlled PWM Converters

机译:数控PWM转换器的小信号离散时间建模

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The letter presents an exact small-signal discrete-time model for digitally controlled pulsewidth modulated (PWM) dc-dc converters operating in constant frequency continuous conduction mode (CCM) with a single effective A/D sampling instant per switching period. The model, which is based on well-known approaches to discrete-time modeling and the standard Z-transform, takes into account sampling, modulator effects and delays in the control loop, and is well suited for direct digital design of digital compensators. The letter presents general results valid for any CCM converter with leading or trailing edge PWM. Specific examples, including approximate closed-form expressions for control-to-output transfer functions are given for buck and boost converters. The model is verified in simulation using an independent system identification approach.
机译:这封信提出了一个精确的小信号离散时间模型,适用于以恒定频率连续导通模式(CCM)工作的数控脉宽调制(PWM)DC-DC转换器,每个开关周期具有一个有效的A / D采样时刻。该模型基于离散时间建模和标准Z变换的众所周知的方法,考虑了采样,调制器效果和控制环路中的延迟,非常适合数字补偿器的直接数字设计。该字母表示对任何具有前沿或后沿PWM的CCM转换器有效的一般结果。针对降压和升压转换器给出了具体示例,包括用于控制到输出传递函数的近似闭合形式表达式。使用独立的系统识别方法在仿真中验证了该模型。

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