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Digital Controller Design for Low Source Current Ripple Fifth-Order Boost Converter

机译:低源电流纹波五阶升压转换器的数字控制器设计

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In this paper, a new fifth-order boost point of load converter is proposed, and then, a digital controller is designed using a Tchebyshev polynomial approach. The proposed converter has a reduced source ripple current together with a better boosting capability at lower duty ratios. Discrete-time models of the converter are formulated and then used in the identification of the direct digital controller stabilizing region. These discrete-time transfer functions are transformed into a Tchebyshev representation, consisting of converter control-to-output and controller transfer functions, which are then used to ascertain the existence of a stabilizing controller, and if stabilization is possible, then the entire set of gains is constructively determined. Using this method, the controller gain range is obtained as a set of inequalities in two variables for a fixed third variable. By sweeping the third variable over its entire range, the complete stabilizing sets are obtained. Within these ranges, the optimal digital controller parameters are obtained through a constrained optimization problem using a genetic algorithm. An integral time absolute error performance index is used in the optimization. A 30-W, 12- to 28-V, and 100-kHz laboratory prototype closed-loop converter has been developed and then tested, both as a simulation and experimentally, for its voltage regulation capability against source and load perturbations. Both the simulated and experimental results confirm the effectiveness of the proposed design.
机译:本文提出了一种新的负载转换器的五阶升压点,然后,采用Tchebyshev多项式方法设计了数字控制器。所提出的转换器在较低占空比下具有降低的源纹波电流以及更好的升压能力。建立转换器的离散模型,然后将其用于直接数字控制器稳定区域的识别。这些离散时间传递函数被转换为Tchebyshev表示形式,由转换器的控制输出到控制器传递函数组成,然后用于确定稳定控制器的存在,如果可能实现稳定,则将整个收益是建设性地确定的。使用此方法,可以获得控制器增益范围,作为固定第三变量的两个变量中的一组不等式。通过在第三个变量的整个范围内进行扫描,可以获得完整的稳定集。在这些范围内,使用遗传算法通过约束优化问题获得最佳数字控制器参数。优化中使用了积分时间绝对错误性能指标。已开发出30W,12V至28V和100kHz的实验室原型闭环转换器,然后在仿真和实验中对其抗电源和负载扰动的电压调节能力进行了测试。仿真和实验结果均证实了所提出设计的有效性。

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