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Design of Optimal QFT Controller and Prefilter for Buck Converter Using Metaheuristic Algorithms

机译:基于元启发式算法的Buck变换器最优QFT控制器和预滤波器设计。

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摘要

A buck converter is a step-down switching regulator. Buck convertors are being widely used in industrial applications that rely on regulated output voltage under fluctuating input voltage. A buck convenor works in the following modes: (a) current-controlled or (b) voltage-controlled mode. But these convertors manifest several nonlinearites because of the switching operation. Hence, in order to generate a quality output of the convenor, the design of a controller becomes crucial. In this paper, the synthesis of a QFT-based robust controller and prefilter has been carried out for an uncertain buck converter with varying input voltage and varying load. The controller synthesis problem has been posed as an optimization problem, and metaheuristic algorithms have been used for obtaining the optimal gains for the QFT controller and prefilter. By doing this, the QFT synthesis can be carried out in a single step instead of following the sequential classical QFT process on Nichols charts and the need for the generation of templates and bounds has be eliminated. The designed 2-degree-of-freedom QFT control system offers a robust behavior and efficiently handles the parametric uncertainties. The robustness of the designed controller has been confirmed through simulation results for large input voltage and load fluctuations.
机译:降压转换器是降压型开关稳压器。降压转换器已广泛应用于在输入电压波动的情况下依靠稳定输出电压的工业应用中。降压式召集人以以下模式工作:(a)电流控制或(b)电压控制模式。但是这些转换器由于开关操作而表现出几种非线性特性。因此,为了产生召集人的高质量输出,控制器的设计变得至关重要。本文针对输入电压和负载变化的不确定降压转换器,对基于QFT的鲁棒控制器和预滤波器进行了综合。控制器综合问题已被提出为优化问题,元启发式算法已用于获得QFT控制器和预滤波器的最佳增益。通过这样做,可以在单个步骤中执行QFT合成,而不是遵循Nichols图上的顺序经典QFT过程,并且消除了生成模板和边界的需要。设计的2自由度QFT控制系统具有强大的性能,可有效处理参数不确定性。通过针对大输入电压和负载波动的仿真结果,已经确认了所设计控制器的鲁棒性。

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  • 来源
    《Modelling and simulation in engineering》 |2018年第2018期|2453817.1-2453817.17|共17页
  • 作者

    Nitish Katal; Shiv Narayan;

  • 作者单位

    Electrical Engineering Department, Punjab Engineering College (Deemed to Be University), Chandigarh, India;

    Electrical Engineering Department, Punjab Engineering College (Deemed to Be University), Chandigarh, India;

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  • 正文语种 eng
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