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A Self-Sustainable Power Management System for Reliable Power Scaling Up of Sediment Microbial Fuel Cells

机译:一种可自我维持的功率管理系统,用于可靠地扩大沉积物微生物燃料电池的功率

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Sediment microbial fuel cells (SMFCs) are considered a promising renewable power source for remote monitoring applications. However, existing SMFCs can only produce several milliwatts of power, and the output power is not scaled linearly with the size of SMFCs. An effective alternative method to increase the output power is to independently operate multiple SMFCs, each of which has an optimal size for maximum power density. Independently operated SMFCs have electrically isolated electrodes (anodes/cathodes), which complicates the design of a suitable power management system (PMS). This paper describes the challenges in designing a PMS that can harvest energy from multiple independently operated (mio) SMFCs and accordingly proposes a design solution. From experimental results, the proposed PMS demonstrates reliable output power scaling up of mio-SMFC. The proposed PMS is self-sustainable because it is powered entirely from harvested energy without requiring additional external power sources.
机译:沉积物微生物燃料电池(SMFC)被认为是用于远程监控应用的有前途的可再生能源。但是,现有的SMFC仅能产生几毫瓦的功率,并且输出功率不会随SMFC的大小线性缩放。一种提高输出功率的有效替代方法是独立运行多个SMFC,每个SMFC的大小均适合最大功率密度。独立操作的SMFC具有电绝缘的电极(阳极/阴极),这会使合适的电源管理系统(PMS)的设计复杂化。本文介绍了设计可从多个独立运行的(mio)SMFC中收集能量的PMS的挑战,并据此提出了一种设计解决方案。从实验结果来看,提出的PMS演示了mio-SMFC的可靠输出功率放大。提议的PMS是自我可持续的,因为它完全由收集的能量供电,不需要额外的外部电源。

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