多接收器无线电源充电器,适用于近场移动电子设备

Khadijat Hassan, S. Pan, P. Jain
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引用次数: 7

摘要

近年来,无线电力传输技术成为人们关注的焦点,因为它有可能为电子设备消费者在使用传统电池充电方法时遇到的挑战提供可行的解决方案。介绍了一种用于手机电池充电的多接收器无线能量传输系统。该电路由一个发射系统和两个接收系统组成。对该电路进行了数学分析和仿真,以了解其随耦合系数和负载变化的特性。为了在没有额外通信模块的情况下在大范围的耦合系数范围内给手机充电,采用了一种变频控制算法。发送电路使用该算法跟踪系统的最大输入功率。当耦合系数变化时,接收电路的输出电压被控制以满足负载的功率需求,通过使用一个开关电容建模为两个背靠背连接的mosfet及其漏源电容。对所提出的变换器电路拓扑进行了仿真,并给出了仿真结果。该电路工作在较宽的耦合系数范围内,无需使用额外的通信模块即可满足移动电话的功率要求。电路的谐振频率为5.7MHZ,设计为两部手机各输出10W (5V, 2A)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multiple receiver wireless power charger for mobile electronic devices in near field
In recent years, wireless power transfer technology has come to limelight because of its possibility of providing viable solutions to the challenges encountered by electronic device consumers when using traditional methods of charging batteries. This paper presents a multiple receiver wireless power transfer system for charging mobile phone batteries. The circuit consists of a transmitter and two receiver systems. A mathematical analysis of the circuit is carried out and simulated to understand its behavior with variation in coupling coefficient and load. In order to charge mobile phones without an extra communication module over a wide range of coupling coefficients, a variable frequency control algorithm is used. The transmitter circuit uses the algorithm to track the maximum input power of the system. The output voltage of the receiver circuit is controlled to meet the power requirement of the load as coupling coefficient varies by using a switch capacitor modeled as two back to back connected MOSFETs with their drain-to-source capacitance. The proposed converter circuit topology is simulated and the results are presented. The circuit operates over a wide range of coupling coefficient and the power requirement of the mobile phones are met without using an extra communication module. The resonance frequency of the circuit is 5.7MHZ and it is design to deliver 10W (5V, 2A) each to two mobile phones.
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