控制理论(社会学)
超调(微波通信)
无线电源传输
发射机
最大功率转移定理
降压式变换器
电容器
电压
工程类
脉冲宽度调制
功率控制
电子工程
功率(物理)
计算机科学
无线
电气工程
电信
物理
频道(广播)
控制(管理)
量子力学
人工智能
作者
Yun Yang,Wenxing Zhong,Sitthisak Kiratipongvoot,Tang Xiao,S.Y.R. Hui
标识
DOI:10.1109/tpel.2017.2747139
摘要
This paper presents a discrete sliding mode control (DSMC) scheme for a series-series compensated wireless power transfer (WPT) system to achieve fast maximum energy efficiency (MEE) tracking and output voltage regulation. The power transmitter of the adopted WPT system comprises a dc/ac converter, which incorporates the hill-climbing-search-based phase angle control in achieving minimum input current injection from its dc source, thereby attaining minimum input power operation. The power receiver comprises a buck-boost converter that emulates an optimal load value, following the MEE point determined by the DSMC scheme. With this WPT system, no direct communication means is required between the transmitter and the receiver. Therefore, the implementation cost of this system is potentially lower and annoying communication delays, which deteriorate control performance, are absent. Both the simulation and experiment results show that this WPT system displays better dynamic regulation of the output voltage during MEE tracking when it is controlled by DSMC, as compared to that controlled by the conventional discrete proportional-integral (PI) control. Such an improvement prevents the load from sustaining undesirable overshoot/undershoot during transient states.
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