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Generalized Hamiltonian Energy Modeling Method for Wireless Power Transfer System

机译:无线电力传输系统的广义哈密顿能量建模方法

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Wireless power transfer (WPT) system is a typical multi-mode, nonlinear, uncertain, high-dimensional system, and system modeling is relatively difficult. This paper proposed an energy modeling method based on Hamilton realization to overcome the limitations of traditional modeling and analysis methods due to system complexity. In this paper, a generalized Hamilton energy realization model of a capacitive power transfer (CPT) system based on double-sided LC-compensated network is established to study the property of the model specification characteristics. From the energy analysis of CPT systems, explaining the dynamic energy changing principle of the electromagnetic conversion process and revealing the principle of wireless power transmission. The simulation results show relations between the energy invariance of the stored energy, and verifies the accuracy of the Hamilton energy model.
机译:无线电力传输(WPT)系统是典型的多模式,非线性,不确定,高维系统,而系统建模相对困难。本文提出了一种基于汉密尔顿实现的能量建模方法,克服了系统复杂性导致传统建模与分析方法的局限性。本文建立了一种基于双面LC补偿网络的电容电力传输(CPT)系统的广义Hamilton能量实现模型,研究了模型规范特性的性能。从CPT系统的能量分析,解释了电磁转换过程的动态能量变化原理,揭示了无线动力传递原理。仿真结果显示了存储能量的能量不变性之间的关系,并验证了汉密尔顿能量模型的准确性。

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