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Robust control for an uncertain LCL resonant ICPT system using LMI method

机译:使用LMI方法的不确定LCL谐振ICPT系统的鲁棒控制

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Frequency drift has considerable adverse effects on the inductively coupled power transfer (ICPT) system such as decrease of transmission power and distance, EMC interference, system detuning and performance deterioration, and deviated operation from system design requirements endangering the stability so that robust control of ICPT system remains an open applied research problem. This article presents a relevant uncertain model for the LCL resonant ICPT system first via the generalized state-space averaging and the LFT methods, and then a solution to H∞ controller synthesis by making use of the LMI method. The control design is first tested by computer simulation and thereafter verified by means of physical experiments. The results show that by applying the proposed H∞ synthesis controller the overall system has achieved both predetermined robustness with respect to the norm-bounded load and frequency uncertainties and dynamically tracking the voltage references according to the actual power demands.
机译:频率漂移对电感耦合功率传输(ICPT)系统具有相当大的不利影响,例如传输功率和距离的减小,EMC干扰,系统失谐和性能下降,以及偏离系统设计要求的运行会危及稳定性,因此对ICPT的鲁棒控制系统仍然是一个开放的应用研究问题。本文首先通过广义状态空间平均和LFT方法为LCL谐振ICPT系统提供了一个相关的不确定模型,然后通过LMI方法求解H∞控制器综合问题。控制设计首先通过计算机仿真进行测试,然后通过物理实验进行验证。结果表明,通过应用所提出的H∞综合控制器,整个系统已实现了针对范数界的负载和频率不确定性的预定鲁棒性,并根据实际功率需求动态跟踪了电压基准。

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