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Novel three-controller average current mode control of DC-DC PWM converters with improved robustness and dynamic response

机译:DC-DC PWM转换器的新型三控制器平均电流模式控制,具有增强的鲁棒性和动态响应

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This paper presents a novel average current mode control (ACC) strategy for the control of pulse width modulated (PWM) DC-DC converters, which represents a drastic improvement over conventional ACC. This new method consists of the addition of an auxiliary controller into the control loop, besides the current and voltage regulators. The model-based auxiliary controller can increase the closed loop small-signal bandwidth of Buck derived converters, preserving loop gain crossover frequency and stability margins over significant changes of the power stage passive elements values, the load and the line voltage. Moreover, this control scheme shows much better disturbance rejection properties, i.e., closed loop impedance and audiosusceptibility, than conventional ACC. From a control theory point of view, robust performance is achieved preserving stability. A Buck prototype has been experimentally tested with different LC output filters, line and load conditions, including discontinuous conduction mode. Measurements of the small signal frequency response of the converter have been carried out, showing the improvement achieved by the proposed control scheme. The empirical large signal response of the converter under load steps is also shown in order to validate the concept.
机译:本文提出了一种新颖的平均电流模式控制(ACC)策略,用于控制脉宽调制(PWM)DC-DC转换器,这是对传统ACC的一种重大改进。这种新方法包括在电流和电压调节器之外,在控制回路中添加辅助控制器。基于模型的辅助控制器可以增加Buck转换器的闭环小信号带宽,在功率级无源元件值,负载和线路电压发生重大变化时,保持环路增益的交越频率和稳定性裕量。而且,该控制方案显示出比常规ACC更好的干扰抑制特性,即闭环阻抗和音频敏感性。从控制理论的角度来看,可以实现鲁棒的性能并保持稳定性。 Buck原型已通过不同LC输出滤波器,线路和负载条件(包括不连续传导模式)进行了实验测试。已经对转换器的小信号频率响应进行了测量,显示了所提出的控制方案所实现的改进。为了验证该概念,还显示了在负载阶跃下转换器的经验大信号响应。

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