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Design of Robust PID Controller for Improving Voltage Response of a Cuk Converter

机译:改善Cuk变换器电压响应的鲁棒PID控制器设计。

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摘要

Power electronics based cuk converter finds many practical and industrial applications such as renewable energy systems, hybrid electric vehicle, electronic voltage regulators, etc., to provide required voltage regulation between input DC stage and output DC stage. For the effective operation of all these kinds of practical applications, it seeks a quick and smooth response from a cuk converter along with the regulated DC output magnitude. The converter control is achieved through a closed-loop PID (proportional cum integral cum derivative) controller. Hence, the efficacy of the overall converter depends on how well the PID gain specifications are designed. There are many methods available for the tuning of PID controller gain specifications, but, the identification of better methods is a tedious task. Further, a method identified as best for a given system can't be generalized as it may not suit for other systems. Hence, a better method for PID tuning has to be identified with respect to each and every system. Keeping this in mind, this paper provides a comprehensive investigation of all the key tuning methods and suggests the best one for cuk converter control with the help of time-domain performance index and frequency-domain stability index. The analysis is done using MATLAB/Simulink software models.
机译:基于电力电子的Cuk转换器可用于许多实际和工业应用,例如可再生能源系统,混合动力汽车,电子稳压器等,以在输入DC级和输出DC级之间提供所需的电压调节。为了使所有这些实际应用有效运行,它寻求来自cuk转换器的快速而平稳的响应以及稳定的DC输出幅度。变频器的控制通过一个闭环PID(比例暨积分暨微分)控制器来实现。因此,整个转换器的效率取决于PID增益规格的设计程度。有许多方法可用于PID控制器增益规格的调整,但是,更好的方法的识别是一项繁琐的任务。此外,无法概括出对给定系统最佳的方法,因为它可能不适用于其他系统。因此,必须针对每个系统确定一种更好的PID调节方法。牢记这一点,本文对所有关键的调谐方法进行了全面的研究,并在时域性能指标和频域稳定性指标的帮助下,提出了用于cuk转换器控制的最佳方法。使用MATLAB / Simulink软件模型进行分析。

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