首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Double-loop PI controller design of the DC-DC boost converter with a proposed approach for calculation of the controller parameters
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Double-loop PI controller design of the DC-DC boost converter with a proposed approach for calculation of the controller parameters

机译:DC-DC升压转换器的双环PI控制器设计以及一种用于计算控制器参数的建议方法

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摘要

Parameters of digital proportional-integral/proportional-integral-derivative controllers are usually calculated using commonly known conventional methods or solution of discrete-time equations. In literature, a model-based compact form formulation for calculation of discrete-time proportional-integral/proportional-integral-derivative controller parameters has not been come across yet. The proposed model-based compact form formulations are introduced to calculate the proportional-integral parameters in discrete time as a new approach. Generally, different types of control techniques are chosen in similar studies for double-loop control for direct current-direct current boost converter control except proportional-integral/proportional-integral. In this study, double-loop proportional-integral controller is used as a different control method from literature. By this way, the most important advantages of the proposed study are to reduce different design methods to a unique proportional-integral design method and shorten all calculations. The accuracy of the double-loop proportional-integral controller's parameters calculated using the model-based compact form formulations is validated both in simulation and experimental studies under various disturbance effects. Satisfactory performance of the proposed controller under model uncertainty and other cases are comparatively shown with the predefined performance criteria.
机译:通常使用公知的常规方法或离散时间方程的解来计算数字比例积分/比例积分微分控制器的参数。在文献中,用于计算离散时间比例积分/比例积分微分控制器参数的基于模型的紧凑形式公式尚未出现。作为一种新方法,引入了基于模型的紧凑形式公式,以在离散时间内计算比例积分参数。通常,在类似的研究中,除了比例积分/比例积分之外,对于直流-直流升压转换器控制的双回路控制,会选择不同类型的控制技术。在这项研究中,双回路比例积分控制器被用作不同于文献的控制方法。通过这种方式,所提出的研究的最重要的优点是将不同的设计方法减少为唯一的比例积分设计方法,并缩短了所有计算。使用基于模型的紧凑形式公式计算的双环比例积分控制器参数的精度在各种干扰效应下的仿真和实验研究中均得到验证。所提出的控制器在模型不确定性和其他情况下的令人满意的性能通过预定义的性能标准进行比较显示。

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