空压机超低振动压电发电机的激励离散力及其应用前景

P. Thainiramit, Y. Wahab, K. Techato, P. Sukwisute, N. Muensit
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引用次数: 0

摘要

在许多国家,住宅建筑的数量一直在快速增长。舒适的家具和智能周边设备在日常生活中变得越来越普遍。例如,可以通过移动电话控制电子无线开关来打开或关闭家用电器(即灯,空调,安防和报警系统),这就是所谓的“家电控制”。本文演示了一种简单的无线独立系统的情况下,接收模块连接到传统空调的压缩机组。本研究提出一种空气压缩机作为离散激励源,并采用传统蜂鸣器作为换能器。利用粘接压电蜂鸣器的悬臂式结构将振动的机械能转化为电能。输出能量存储在电容器中,从而形成微型发电机;然后,传输的数据由无线接收器从远程发射器接收。这些结果证实,简单的悬臂可以作为连接电容器的充电器,随后成为无线单元的能量来源。在这项工作中,一台运行中的空调在1小时内对电容器产生了一个3,150µF的充电循环。这足以发送和接收建筑物周围的大气温度数据。这个应用程序是一个有用的警告标志,为居民。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Excited Discrete Force for Piezo Generator Undergone Ultra-Low Vibrations on Air-Compressor and Possible Application
The number of residential buildings in many countries has been fast growing. Comfortable furniture and smart peripheral devices become common for well living in daily life. For example, an electronic wireless switch could be controlled via a mobile phone to open or close home appliances (i.e. light, air-conditioner, security and alarm system), it is so-called "Home Appliances Control". This paper demonstrated a simple-wireless standalone system for the case of the receiver module attached to the compressor unit of the conventional air conditioner. This research proposed an air-compressor as a source of discrete excitations and employed a conventional buzzer as a transducer. The vibration is harvested its mechanical energy to electricity by using a cantilever-type structure glued with the piezoelectric buzzer. The output energy is stored in capacitors thus being consequent as a miniature generator; then, the transmitted data is received by a wireless receiver from the remote transmitter. These result confirmed that the simple cantilever could act as a charger for the connected capacitors which was subsequently an energy source to feed wireless units. In this work, a running air-conditioner produced a charging cycle to capacitors of 3,150 µF within 1 hour. This is sufficient to send and receive the data of atmospheric temperature around the building. This application is useful as a warning sign for inhabitants.
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