Frequency jitter control of a multiple pick-up Bidirectional Inductive Power Transfer system

M. Neath, U. Madawala, D. Thrimawithana
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引用次数: 11

Abstract

Bidirectional Inductive Power Transfer (IPT) systems are high order resonant circuits and require relatively sophisticated control strategies to regulate the power flow. The control of multi-pick-up IPT systems is more challenging as the order and complexity of the system increase with number of pick-ups. This paper proposes a new controller to regulate the power flow in both directions in multi-pick-up bidirectional IPT systems. The proposed controller utilises frequency jitter to control the power flow. The controller enables operation at tuned frequency over the entire load range, minimising the VA ratings of converters and eliminating the need for any direct communication. The validity of the jitter control concept is demonstrated through simulated results of a 4 kW bidirectional IPT system with 3 pick-ups (loads).
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多拾取器双向感应功率传输系统的频率抖动控制
双向感应功率传输(IPT)系统是高阶谐振电路,需要相对复杂的控制策略来调节功率流。多拾音器IPT系统的控制变得更加具有挑战性,因为系统的顺序和复杂性随着拾音器数量的增加而增加。本文提出了一种新的多采样双向IPT系统的双向潮流调节控制器。该控制器利用频率抖动来控制功率流。该控制器能够在整个负载范围内以调谐频率运行,最大限度地降低了转换器的额定电压,并消除了任何直接通信的需要。通过4 kW双向IPT系统3个负载的仿真结果,验证了抖动控制概念的有效性。
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