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Powering the IoT: Storage-less and converter-less energy harvesting

机译:为物联网提供动力:无存储和无转换器的能量收集

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Wide spread of Internet of Things (IoTs) still have huddles in cost and maintenance. Energy harvesting is a promising option to mitigate battery replacement, but the current energy harvesting methods still rely on batteries or equivalent and power converters for the maximum power point tracking (MPPT). Unfortunately, batteries are subject to wear and tear, which is a primary factor to prevent from being maintenance free. Power converters are expensive, heavy and lossy as well. In this paper, we introduce a novel energy harvesting and management technique to power the IoT, which does not require any long-term energy storages nor voltage converters unlike traditional energy harvesting systems. Extensive simulations and measurements from our prototype demonstrate that the proposed method harvests 8% more energy and extends the operation time of the device 60% more during a day. This paper also demonstrates a UV (ultraviolet) level meter for skin protect, named SmartPatch, using the proposed energy harvesting method. The proposed method is not limited to photovoltaic energy harvesting but applicable to most energy harvesting IoT power supplies that require impedance tracking.
机译:物联网(IoT)的广泛普及仍然使成本和维护受到阻碍。能量收集是减少电池更换的一种有前途的选择,但是当前的能量收集方法仍依赖电池或等效电池和功率转换器来实现最大功率点跟踪(MPPT)。不幸的是,电池容易磨损,这是防止免维护的主要因素。功率转换器也昂贵,沉重且有损耗。在本文中,我们介绍了一种新型的能量收集和管理技术来为物联网供电,与传统的能量收集系统不同,该技术不需要任何长期的能量存储或电压转换器。我们的原型进行了广泛的仿真和测量,结果表明,该方法在一天中可多收8%的能量,并将设备的运行时间延长60%以上。本文还演示了一种使用建议的能量收集方法的,用于皮肤保护的紫外线(紫外线)液位计,称为SmartPatch。所提出的方法不限于光伏能量收集,而是适用于需要阻抗跟踪的大多数能量收集物联网电源。

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