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A DC–DC Boost Converter With Variation-Tolerant MPPT Technique and Efficient ZCS Circuit for Thermoelectric Energy Harvesting Applications

机译:具有变容差MPPT技术和高效ZCS电路的DC-DC升压转换器,用于热电能量收集应用

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摘要

This paper presents a dc–dc boost converter with the maximum power point tracking (MPPT) technique for thermoelectric energy harvesting applications. The technique realizes variation tolerance by adjusting the switching frequency of the converter. A finely controlled zero-current switching (ZCS) scheme together with the accurate MPPT technique enhances the overall efficiency of the converter because of an optimal turn-on time generated by a one-shot pulse generator that is proposed. Moreover, the ZCS technique can deal with low- and high-temperature differences applied to the thermoelectric generator. This allows a wider range of conversion ratios compared to those of conventional converters used for thermal energy harvesting. Experimentally, the converter implemented in a 0.35-μm BCDMOS process had a peak efficiency of 72% at the input voltage of 500 mV while supplying a 5.62-V output.
机译:本文介绍了一种具有最大功率点跟踪(MPPT)技术的DC-DC升压转换器,用于热电能量收集应用。该技术通过调整转换器的开关频率来实现变化容限。精细控制的零电流开关(ZCS)方案与精确的MPPT技术一起提高了转换器的整体效率,因为提出了由单脉冲发生器产生的最佳接通时间。此外,ZCS技术可以处理应用于热电发电机的低温和高温差异。与用于热能收集的常规转换器相比,这允许更大范围的转换比。实验上,以0.35μmBCDMOS工艺实现的转换器在500mV输入电压下的峰值效率为72%,同时提供5.62V输出。

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