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Wind Flutter Energy Converter for Wireless Sensor Networks.

机译:用于无线传感器网络的风振能量转换器。

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摘要

Methods for harvesting energy from the environment have been widely studied in recent years. Theoretically, these renewable environmental resources could provide endless energy to drive large batches of autonomous systems for applications. Renewable energy sources include solar radiation, wind or water flow, temperature differences, etc. Moreover, human motion, such as walking or arm-swinging, and machine/vehicle-induced vibrations can also provide adequate energy to power certain electronic devices.;"Flutter" is a phenomenon that describes the structural self-excited oscillation attributable to the positive feedback between elastic structures and aerodynamic forces. Flutter is always considered harmful in some engineering applications, such as bridge decks and airfoils, among others. However, flutter has also been proven effective for the extraction of energy from airflows, which is the focus of the current project.;In the present thesis, a novel energy converter using the aerodynamic principle known as flutter is discussed. The objective is to harvest energy from low-speed wind flows to power electronic applications, such as wireless sensor networks, outdoor lighting systems, etc. A systematic approach to optimize the efficiency of a low-speed wind energy conversion system, i.e., by providing a theoretical background to analyze and understand the entire energy transduction process, is presented.;Experimental results are also discussed to validate the theoretical formulation. The prototype device comprises four parts, namely, a) a wind-belt specifically designed to transform the wind flows into periodic mechanical vibrations; b) an electromagnetic resonant device with two coils fixed on a supportive housing and a permanent magnet inside a movable bolt acting as a piston; c) a power management circuit, which can store induced electrical energy into a super capacitor and provide an appropriate voltage level to support commercial electronic devices; and d) a wireless sensor node, which includes a microcontroller MSP430, a CC2500 wireless transceiver unit, and a temperature sensor. Typically ∼ 7 mW of electrical energy can be obtained at ∼3 m/s wind speed using a one-meter long belt. The capability of this generator as a driver for such a commercial wireless temperature sensor is demonstrated.
机译:近年来,从环境中收集能量的方法已得到广泛研究。从理论上讲,这些可再生环境资源可以提供无穷无尽的能量来驱动大批用于应用程序的自治系统。可再生能源包括太阳辐射,风或水流量,温差等。此外,诸如步行或手臂摆动之类的人体运动以及机器/车辆引起的振动也可以提供足够的能量来为某些电子设备供电。” “颤振”是一种现象,描述了由于弹性结构和空气动力之间的正反馈而引起的结构自激振荡。在某些工程应用(例如桥面和机翼等)中,颤振始终被认为是有害的。然而,颤振也已被证明有效地从气流中提取能量,这是当前项目的重点。在本论文中,本文讨论了一种利用空气动力学原理的新型能量转换器,称为颤振。目的是从低速风流中获取能量,以用于电力电子应用,例如无线传感器网络,室外照明系统等。一种系统方法来优化低速风能转换系统的效率,即通过提供为分析和理解整个能量转换过程提供了理论背景。;还讨论了实验结果以验证理论公式。原型设备包括四个部分,即:a)专门设计用于将气流转换为周期性机械振动的风带; b)一种电磁谐振装置,其具有固定在支撑壳体上的两个线圈以及在用作活塞的可移动螺栓内的永磁体; c)电源管理电路,其可以将感应的电能存储到超级电容器中并提供适当的电压电平以支持商用电子设备; d)无线传感器节点,其包括微控制器MSP430,CC2500无线收发器单元和温度传感器。使用一根一米长的皮带,在约3 m / s的风速下通常可获得约7 mW的电能。证明了该发生器作为这种商用无线温度传感器的驱动器的能力。

著录项

  • 作者

    Fei, Fei.;

  • 作者单位

    The Chinese University of Hong Kong (Hong Kong).;

  • 授予单位 The Chinese University of Hong Kong (Hong Kong).;
  • 学科 Alternative Energy.;Engineering Electronics and Electrical.;Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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