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Self-Powered Wind Sensor System for Detecting Wind Speed and Direction Based on a Triboelectric Nanogenerator

机译:基于摩擦纳米料检测风速和方向的自动风传感器系统

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The development of the Internet of Things has brought new challenges to the corresponding distributed sensor systems. Self-powered sensors that can perceive and respond to environmental stimuli without an external power supply are highly desirable. In this paper, a self-powered wind sensor system based on an anemometer triboelectric nanogenerator (a-TENG, free-standing mode) and a wind vane triboelectric nanogenerator (v-TENG, single-electrode mode) is proposed for simultaneously detecting wind speed and direction. A soft friction mode is adopted instead of a typical rigid friction for largely enhancing the output performance of the TENG. The design parameters including size, unit central angle, and applied materials are optimized to enhance sensitivity, resolution, and wide measurement scale. The optimized a-TENG could deliver an open-circuit voltage of 88 V and short-circuit current of 6.3 mu A, corresponding to a maximum power output of 0.47 mW (wind speed of 6.0 m/s), which is capable of driving electronics for data transmission and storage. The current peak value of the a-TENG signal is used for analyzing wind speed for less energy consumption. Moreover, the output characteristics of a v-TENG are further explored, with six actual operation situations, and the v-TENG delivers fast response to the incoming wind and accurately outputs the wind direction data. As a wind sensor system, wind speed ranging from 2.7 to 8.0 m/s can be well detected (consistent with a commercial sensor) and eight regular directions can be monitored. Therefore, the fabricated wind sensor system has great potential in wireless environmental monitoring applications.
机译:事物互联网的发展为相应的分布式传感器系统带来了新的挑战。非常希望能够感知和响应环境刺激而无需外部电源的自动传感器。本文采用了一种基于风速计摩擦纳米电磁体(A-Teng,独立式模式)和风叶片摩托电纳米料(V-Teng,单电极模式)的自动风传感器系统,用于同时检测风速和方向。采用柔软的摩擦模式而不是典型的刚性摩擦力,用于大大提高滕的输出性能。设计参数包括尺寸,单位中心角和应用材料,以提高灵敏度,分辨率和宽测量尺度。优化的A-Teng可以提供88 V和短路电流的开路电压,相应于最大功率输出0.47 MW(风速为6.0米/秒),其能够驱动电子设备用于数据传输和存储。 A-Teng信号的电流峰值用于分析风速以减少能量消耗。此外,进一步探索了V-Teng的输出特性,具有六个实际操作情况,V-Teng提供了对进入风的快速响应,并准确地输出风向数据。作为风传感器系统,可以良好地检测到2.7至8.0 m / s的风速(与商业传感器一致),可以监控八个规则方向。因此,制造的风传感器系统在无线环境监测应用中具有很大的潜力。

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