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Natural wind-driven ultra-compact and highly efficient hybridized nanogenerator for self-sustained wireless environmental monitoring system

机译:用于自持续无线环境监测系统的天然风力驱动的超紧凑型和高效杂交纳米机

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Owing to the climate change and energy crisis, harvesting energy from our surroundings and the construction of self-powered wireless environmental monitoring systems are promising approaches in modern times. In this paper, an ultra-compact highly efficient miniaturized windmill comprising a hybridized nanogenerator (MW-HNG) is reported based on three conversion mechanisms i.e. triboelectric nanogenerator (TENG), piezoelectric nanogenerator (PENG), and electromagnetic generator (EMG). The MW-HNG is designed as a 3D-printed fully-enclosed structure for the natural wind energy harvesting by converting into rotational motion: all harvesting units reside in a common rotation system to effectively and simultaneously produce electricity. At a wind speed of 6 m/s, the flexible-blade-based hybridization-mode (contact-lateral sliding-separation-contact) TENG and coupled PENG can generate maximal power values of 1.67 mW and 1.38 mW at optimal load resistances of 10 M Omega and 330 K Omega, respectively. In contrast, the multipole-magnet-based EMG can obtain a maximal output power of 268.6mW at 180 Omega. The MW-HNG demonstrates a quick charging ability for capacitors and the capability to feed hundreds of LEDs. Further, a self-powered wireless sensor system is developed for real-time environmental monitoring by combining an MW-HNG, a customized power management circuit, and wireless sensor unit (a smartphone to display sensor data). Our proposed MW-HNG is suitable for self-powered wireless sensor networks (WSNs) in the subway system by generating high-power electrical output from moving-induced wind mechanical energy.
机译:由于气候变化和能源危机,从环境中收获能源和自动无线环境监测系统的建设是现代近代的有希望的方法。本文基于三次转化机制,报道了包含杂交纳米晶体(MW-HNG)的超紧凑高效的小型化风车,即摩擦纳米料(滕),压电纳米液和电磁发生器(EMG)。 MW-HNG设计为通过转换为旋转运动来自然风能收集的3D印刷的完全封闭结构:所有收获单元都驻留在共同的旋转系统中,以有效且同时产生电力。在6米/秒的风速下,柔性叶片的杂交 - 模式(接触横向滑动 - 分离接触)腾和耦合彭可以在最佳负载电阻下产生1.67mW和1.38 MW的最大功率值M omega和330 k欧米茄分别。相反,基于多极 - 磁体的EMG可以在180欧米加获得268.6MW的最大输出功率。 MW-HNG表明了电容器的快速充电能力和馈送数百个LED的能力。此外,通过组合MW-HNG,定制电源管理电路和无线传感器单元(智能手机来显示传感器数据)来开发自动无线传感器系统以实时环境监测。我们所提出的MW-HNG通过从移动引起的风力机械能产生高功率电输出,适用于地铁系统中的自动无线传感器网络(WSNS)。

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