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A Wind Energy Powered Wireless Temperature Sensor Node

机译:风能供电的无线温度传感器节点

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摘要

A wireless temperature sensor node composed of a piezoelectric wind energy harvester, a temperature sensor, a microcontroller, a power management circuit and a wireless transmitting module was developed. The wind-induced vibration energy harvester with a cuboid chamber of 62 mm × 19.6 mm × 10 mm converts ambient wind energy into electrical energy to power the sensor node. A TMP102 temperature sensor and the MSP430 microcontroller are used to measure the temperature. The power management module consists of LTC3588-1 and LT3009 units. The measured temperature is transmitted by the nRF24l01 transceiver. Experimental results show that the critical wind speed of the harvester was about 5.4 m/s and the output power of the harvester was about 1.59 mW for the electrical load of 20 kΩ at wind speed of 11.2 m/s, which was sufficient to power the wireless sensor node to measure and transmit the temperature every 13 s. When the wind speed increased from 6 m/s to 11.5 m/s, the self-powered wireless sensor node worked normally.
机译:开发了由压电风能采集器,温度传感器,微控制器,电源管理电路和无线传输模块组成的无线温度传感器节点。具有62毫米×19.6毫米×10毫米长方体腔的风振能量采集器将周围的风能转换为电能,为传感器节点供电。 TMP102温度传感器和MSP430微控制器用于测量温度。电源管理模块由LTC3588-1和LT3009单元组成。测量的温度由nRF24l01收发器发送。实验结果表明,在风速为11.2 m / s时,电负载为20kΩ时,收割机的临界风速约为5.4 m / s,收割机的输出功率约为1.59 mW。无线传感器节点,每13秒测量和传输一次温度。当风速从6 m / s增加到11.5 m / s时,自供电无线传感器节点正常工作。

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