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Misalignment controller in wireless battery charger for electric vehicle based on MPPT method and metaheuristic algorithm

机译:基于MPPT方法和元启发式算法的电动汽车无线充电器失准控制器。

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This paper focuses on applying a wireless power transfer WPT technology in an electric vehicle battery charger. The wireless charger system is based on the principle of resonance inductive coupling power through a coreless transformer. The WPT system is considered as a multi parameter and multi constrained nonlinear system. The main contribution in this paper is the use of PSO and GA metaheuristic algorithms in the optimization of a transformer design regarding the impact of a lateral misalignment and the separation distance between the primary and secondary coils. To find the best global solution which is considered as the maximum efficiency in the complex system, both algorithms are compared. A perturbation-and-observation-based tracking system is developed through an efficiency sensing system to act on the misalignment issue and the car position. An additional PSO controller is performed to control the duty cycle of the boost converter in order to follows the maximum efficiency operating points of a WPT system. The discrepancy is the use of the resonant inductive coupling as a source of the MPPT so as to perturb the car position and observe the transferred. Furthermore, the modeling of a contactless transformer is optimized using metaheuristic algorithm.
机译:本文着重于将无线电源传输WPT技术应用于电动汽车电池充电器。无线充电器系统基于通过无芯变压器的谐振感应耦合功率原理。 WPT系统被认为是一个多参数和多约束的非线性系统。本文的主要贡献在于,在考虑横向错位的影响以及一次线圈和二次线圈之间的间距的影响的变压器设计优化中,采用了PSO和GA元启发式算法。为了找到被认为是复杂系统中最大效率的最佳全局解决方案,将两种算法进行了比较。通过效率感测系统开发了基于扰动和观测的跟踪系统,以对错位问题和轿厢位置进行操作。执行附加的PSO控制器以控制升压转换器的占空比,以便遵循WPT系统的最大效率工作点。差异是使用谐振电感耦合作为MPPT的来源,以扰动轿厢位置并观察转移。此外,使用元启发式算法优化了非接触式变压器的建模。

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