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Energy-Aware Approaches for Energy Harvesting Powered Wireless Sensor Nodes

机译:用于能量收集的无线传感器节点的能量感知方法

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Intensive research on energy harvesting powered wireless sensor nodes (WSNs) has been driven by the needs of reducing the power consumption by the WSNs and increasing the power generated by energy harvesters. The mismatch between the energy generated by the harvesters and the energy demanded by the WSNs is always a bottleneck as the ambient environmental energy is limited and time varying. This paper introduces a combined energy-aware interface with an energy-aware program to deal with the mismatch through managing the energy flow from the energy storage capacitor to the WSNs. These two energy-aware approaches were implemented in a custom developed vibration energy harvesting powered WSN. The experimental results show that, with the 3.2-mW power generated by a piezoelectric energy harvester under an emulated aircraft wing strain loading of 600 με at 10 Hz, the combined energy-aware approaches enable the WSN to have a significantly reduced sleep current from 28.3 μA of a commercial WSN to 0.95 μA and enable the WSN operations for a long active time of about 1.15 s in every 7.79 s to sample and transmit a large number of data (388 B), rather than a few ten milliseconds and a few bytes, as demanded by vibration measurement. When the approach was not used, the same amount of energy harvested was not able to power the WSN to start, not mentioning to enabling the WSN operation, which highlighted the importance and the value of the energy-aware approaches in enabling energy harvesting powered WSN operation successfully.
机译:减少无线传感器网络的功耗并增加能量收集器产生的功率的需求推动了对能量收集供电的无线传感器节点(WSN)的深入研究。收割机产生的能量与WSN所需的能量之间的不匹配始终是瓶颈,因为周围环境能量有限且时变。本文介绍了一个结合了能量感知接口和能量感知程序的接口,以通过管理从能量存储电容器到WSN的能量流来解决不匹配问题。这两种能量感知方法是在定制开发的振动能量收集供电的WSN中实现的。实验结果表明,利用压电能量采集器在10 Hz的模拟飞机机翼应变载荷下在10 Hz下产生的3.2 mW功率下,组合的能量感知方法使WSN的睡眠电流从28.3显着降低商用WSN的μA达到0.95μA,并使WSN操作能够在每7.79 s中有大约1.15 s的长时间激活时间,以采样和传输大量数据(388 B),而不是几十毫秒和几个字节,按照振动测量的要求。如果不使用该方法,则收集到的相同能量无法为WSN供电,更不用说启用WSN了,这突出了能量感知方法在启用能量收集供电的WSN中的重要性和价值。操作成功。

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