Open loop dynamic transmitter voltage scaling for fast response and wide load range power efficient WPT system

T. Kawajiri, H. Ishikuro
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引用次数: 2

Abstract

This paper presents a fast response wireless power delivery system with open loop dynamic transmitter voltage scaling technique to keep power efficiency in wide load range. In this technique, according to change of receiver side power consumption, the driving voltage of the transmitter (TX) coil is properly adjusted to control transmission power. The transmitting power and switching loss can be reduced in proportion to the square of the driving voltage. Therefore, it can improve power efficiency. To enhance power control speed, the driving voltage is not locally regulated but automatically determined by the feedback loop of the total WPT system. Fabricated test chips in 180-nm LDMOS process achieved maximum power efficiency of 50.9% when the output power is 0.5W. The output power ranges from 0.03W to 0.5W. The output voltage ripple is kept within 3.5% even when the output power is abruptly changed by one order of magnitude.
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开环动态变送器电压标度用于快速响应和宽负载范围的高效WPT系统
本文提出了一种采用开环动态发射机电压标度技术的快速响应无线电力传输系统,以保证大负载范围内的电力效率。在该技术中,根据接收端功耗的变化,适当调整发射线圈的驱动电压来控制发射功率。发射功率和开关损耗可以与驱动电压的平方成比例地减小。因此,它可以提高电源效率。为了提高功率控制速度,驱动电压不是局部调节,而是由整个WPT系统的反馈回路自动确定。采用180nm LDMOS工艺制作的测试芯片,在输出功率为0.5W时,功率效率最高达50.9%。输出功率范围为0.03W ~ 0.5W。即使输出功率突然变化一个数量级,输出电压纹波也保持在3.5%以内。
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