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A Novel Power Delivery Method for Asynchronous Loads in Energy Harvesting Systems

机译:能量收集系统中异步载荷的新型电力传递方法

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DC/DC conversion has been an integral part of the power delivery chain in energy harvesting systems because the conventionally targeted synchronous computation load demands stable Vdd, which cannot in general be supplied by power harvesters directly. However, asynchronous computation loads, in addition to their potential power-saving capabilities, can be made tolerant to a much wider range of Vdd variance. This may open up opportunities for much more energy efficient methods of power delivery to be adopted. This paper presents in-depth investigations into the behavior and performance of different power delivery methods driving both asynchronous and synchronous load for the first time. A novel power delivery method, which employs a capacitor bank for adaptively storing the energy from power harvesters depending on load and source conditions, is developed. Its advantages, especially when driving asynchronous loads, are demonstrated through comprehensive comparative analysis.
机译:DC / DC转换一直是能量收集系统中电力输送链的组成部分,因为常规目标同步计算负载需要稳定的VDD,这通常不能直接通过功率收割机提供。然而,除了潜在的省电功能之外,异步计算负载可以容忍更广泛的VDD方差。这可能会使采用更高能力的电力输送方式开辟机会。本文介绍了对不同电力输送方法的行为和性能的深入调查,这是第一次驱动异步和同步负载的不同电力输送方法。开发了一种新型电力输送方法,其采用电容器组,用于根据负载和源条件自适应地将能量自适应地存储能量。通过全面的比较分析证明了其优点,特别是在驱动异步载荷时。

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