Simulation of Maximum Efficiency Point Tracking in Wireless Power Transfer Systems using Pulse Density Modulation

Urmila Mathure, R. Ramkrishna
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引用次数: 1

Abstract

This paper presents a method of control known as maximum efficiency point tracking (MEPT). This method of control is used for wireless power transfer (WPT) systems to provide maximum value of efficiency against load variations and coupling with achieving power demands of the system. In traditional MEPT systems, on both transmitting and receiving sides dc/dc converters are used in order to achieve maximum efficiency and for the regulation of output voltage. But this arrangement increases the complexity of network with increasing power loss. Some implementations lead to new problems like hard switching, large dc voltage ripples and low average efficiency. An implementation of MEPT based on pulse density modulation is explained in this paper which removes all the drawbacks in existing implementation. A PDM circuit is used in both transmitting and receiving side to achieve maximum efficiency. A simulation circuit is built in matlab in this paper to get maximum efficiency. By varying load resistances and pulse densities in the matlab Simulink circuit an efficiency and output voltage is checked By comparing the results of existing MEPT implementation with this simulation circuit of WPT using PDM it achieved efficiency upto 83% for various load resistances and pulse densities.
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脉冲密度调制无线电力传输系统中最大效率点跟踪的仿真
本文提出一种称为最大效率点跟踪(MEPT)的控制方法。这种控制方法用于无线电力传输(WPT)系统,以提供最大的效率值,以应对负载变化和耦合,实现系统的功率需求。在传统的MEPT系统中,为了实现最大的效率和调节输出电压,在发射端和接收端都使用dc/dc转换器。但这种安排增加了网络的复杂性,同时也增加了功率损耗。一些实现带来了硬开关、大直流电压波动和低平均效率等新问题。本文介绍了一种基于脉冲密度调制的MEPT实现方法,该方法消除了现有实现方法中的所有缺陷。发射端和接收端均采用PDM电路,以达到最高效率。为了达到最大的效率,本文在matlab中搭建了仿真电路。通过在matlab Simulink电路中改变负载电阻和脉冲密度,检查了效率和输出电压。通过将现有的MEPT实现结果与使用PDM的WPT仿真电路进行比较,在不同负载电阻和脉冲密度下,效率高达83%。
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