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首页> 外文期刊>Nature reviews Cancer >Plant Microbial Fuel Cells-Based Energy Harvester System for Self-powered IoT Applications
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Plant Microbial Fuel Cells-Based Energy Harvester System for Self-powered IoT Applications

机译:植物微生物燃料电池为自动IOT应用的基于微生物燃料电池的能量收割机系统

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摘要

The emergence of modern technologies, such as Wireless Sensor Networks (WSNs), the Internet-of-Things (IoT), and Machine-to-Machine (M2M) communications, involves the use of batteries, which pose a serious environmental risk, with billions of batteries disposed of every year. However, the combination of sensors and wireless communication devices is extremely power-hungry. Energy Harvesting (EH) is fundamental in enabling the use of low-power electronic devices that derive their energy from external sources, such as Microbial Fuel Cells (MFC), solar power, thermal and kinetic energy, among others. Plant Microbial Fuel Cell (PMFC) is a prominent clean energy source and a step towards the development of self-powered systems in indoor and outdoor environments. One of the main challenges with PMFCs is the dynamic power supply, dynamic charging rates and low-energy supply. In this paper, a PMFC-based energy harvester system is proposed for the implementation of autonomous self-powered sensor nodes with IoT and cloud-based service communication protocols. The PMFC design is specifically adapted with the proposed EH circuit for the implementation of IoT-WSN based applications. The PMFC-EH system has a maximum power point at 0.71 V, a current density of 5 mA cm-2, and a power density of 3.5 mW cm-2 with a single plant. Considering a sensor node with a current consumption of 0.35 mA, the PMFC-EH green energy system allows a power autonomy for real-time data processing of IoT-based low-power WSN systems.
机译:现代技术的出现,如无线传感器网络(WSNS),互联网(物联网)和机器到机器(M2M)通信,涉及使用电池,这些电池造成严重的环境风险数十亿的电池每年都有。然而,传感器和无线通信设备的组合极其焦急。能量收集(EH)是可以使用从外部来源获得能量的低功率电子设备的基础,例如微生物燃料电池(MFC),太阳能,热和动能等。植物微生物燃料电池(PMFC)是一个突出的清洁能源,迈向室内和室外环境中的自动系统的发展。 PMFCS的主要挑战之一是动态电源,动态充电率和低能量供应。在本文中,提出了一种基于PMFC的能量收割机系统,用于实现具有物联网和基于云的服务通信协议的自主自动传感器节点。 PMFC设计专门适用于所提出的EH电路,用于实现基于IOT-WSN的应用程序。 PMFC-EH系统的最大功率点为0.71 V,电流密度为5 mA cm-2,电源密度为3.5mm cm-2,单株植物。考虑到电流消耗量为0.35 mA的传感器节点,PMFC-EH绿色能量系统允许电力自主权用于基于IOT的低功耗WSN系统的实时数据处理。

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