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A miniaturized cost effective shared inductor based energy management system for ultra-low-voltage electromagnetic energy harvesters in battery powered applications

机译:用于电池供电应用中的超低压电磁能量采集器的,基于成本效益的最小化共享电感器的小型化

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This paper presents a miniaturized and cost effective energy management system (EMS) for ultra-low-voltage electromagnetic energy harvesters (EMEHs) in battery powered applications. The EMS topology is based on utilizing a single inductor that is shared between positive and negative half cycles of the EMEH voltage and hence achieving system's cost and size reductions. Also, the EMS topology utilizes a smaller number of active components compared to existing solutions, used with ac harvesters, and hence allowing for further reduction in system's cost and simple implementation. The shared inductor is not only used by the power stage but also as a key part of the bias supply scheme. The EMS converts EMEH's ac voltage into a dc one in a single step and provides a maximum power point tracking (MPPT) feature to maximize the harvested energy. Experimental results show the effectiveness of the presented solution to provide MPPT for EMEH that has a damped voltage characteristics ranging from 1.2V to 10mV. The presented solution achieves 86.5% and 50% reductions in magnetics volume, which is the biggest contributor to the real estate of the EMS, compared to [1] and [2], respectively. Also, it can harvest more energy by 41.6% and 21.4% compared to [1] and [2], respectively, while reduces the BOM cost by 57.6% compared to [2].
机译:本文提出了一种用于电池供电应用中的超低压电磁能量收集器(EMEH)的小型且经济高效的能量管理系统(EMS)。 EMS拓扑基于利用在EMEH电压的正半周和负半周之间共享的单个电感器,从而实现了系统的成本和尺寸的减小。此外,与现有的解决方案相比,EMS拓扑使用的有源组件数量更少,可与ac收割机一起使用,因此可进一步降低系统成本并简化实施。共享电感器不仅被功率级使用,而且还用作偏置电源方案的关键部分。 EMS一步一步将EMEH的交流电压转换为直流电压,并提供最大功率点跟踪(MPPT)功能,以最大限度地利用能量。实验结果表明,所提出的解决方案可为EMEH提供MPPT,其阻尼电压特性范围为1.2V至10mV。与[1]和[2]相比,所提出的解决方案实现了86.5%的磁体积减少和50%的磁体积减少,这是EMS房地产的最大贡献者。而且,与[1]和[2]相比,它可以分别收获更多的能量41.6 \%和21.4 \%,而与[2]相比,可以将BOM成本降低57.6 \%。

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