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Storage-Less and Converter-Less Photovoltaic Energy Harvesting With Maximum Power Point Tracking for Internet of Things

机译:借助物联网的最大功率点跟踪,可实现无存储和无转换器光伏发电

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Energy harvesting from natural environment gives range of benefits for the Internet of things. Scavenging energy from photovoltaic (PV) cells is one of the most practical solutions in terms of power density among existing energy harvesting sources. PV power systems mandate the maximum power point tracking (MPPT) to scavenge the maximum possible solar energy. In general, a switching-mode power converter, an MPPT charger, controls the charging current to the energy storage element (a battery or equivalent), and the energy storage element provides power to the load device. The mismatch between the maximum power point (MPP) current and the load current is managed by the energy storage element. However, such architecture causes significant energy loss (typically over 20%) and a significant weight/volume and a high cost due to the cascaded power converters and the energy storage element. This paper pioneers a converter-less PV power system with the MPPT that directly supplies power to the load without the power converters or the energy storage element. The proposed system uses a nonvolatile microprocessor to enable an extremely fine-grain dynamic power management in a few hundred microseconds. This makes it possible to match the load current with the MPP current. We present detailed modeling, simulation, and optimization of the proposed energy harvesting system including the radio frequency transceiver. Experiments show that the proposed setup achieves an 87.1% of overall system efficiency during a day, 30.6% higher than the conventional MPPT methods in actual measurements, and thus a significantly higher duty cycle under a weak solar irradiance.
机译:从自然环境中收集能量为物联网带来了一系列好处。就现有能量收集源中的功率密度而言,从光伏(PV)电池中清除能量是最实用的解决方案之一。光伏发电系统要求最大功率点跟踪(MPPT)来清除可能的最大太阳能。通常,开关模式功率转换器,MPPT充电器控制到储能元件(电池或等效电池)的充电电流,并且储能元件向负载设备供电。最大功率点(MPP)电流和负载电流之间的不匹配由储能元件控制。然而,由于级联功率转换器和能量存储元件,这种架构导致显着的能量损失(通常超过20%),显着的重量/体积和高成本。本文率先提出了一种无转换器的PV电源系统,该系统具有MPPT,可直接向负载供电,而无需电源转换器或储能元件。拟议的系统使用非易失性微处理器来实现数百微秒内的极细粒度动态电源管理。这样可以使负载电流与MPP电流匹配。我们介绍了拟议的能量收集系统(包括射频收发器)的详细建模,仿真和优化。实验表明,建议的设置在一天中可达到整个系统效率的87.1%,比实际测量中的传统MPPT方法高30.6%,因此在弱太阳辐射下的占空比明显更高。

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