A Novel Energy Harvesting Logics using MEMS for IoT Assisted Applications

I. S., Roselin Sneha P, N. G, S. S
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Abstract

With the help of the Internet of Things (IoT), it is possible to organize and operate a vast network of internet-connected, intelligent wireless devices. The use of conventional batteries in IoT devices creates safety risks, environmental problems and shortens their lifespan. Sustainable green power utilized in wireless as well as portable devices in IoT may be achieved by the collection and transformation of ambient environmental energy. This study examines the current state-of -the-art in mechanical, light/solar, wind, sound, RF, biomechanical, and pyroelectric energy harvesting. Therefore, it is crucial for the growth of the IoT that effective methods of storing and managing energy be developed. In this study, take a look at the several energy harvesting methods that may be used with IoT devices, all of which are based on MEMS (Micro Electro Mechanical Systems). An integral aspect of the IoT is the sensor network, which in turn necessitates wireless energy delivery. The IoT has been putting into practice autonomous power harvesting technologies based on need. Vibrating devices based on MEMS are effective in collecting energy from thermal, vibrational, and electromagnetic waves, all of which are common environmental impacts. The concepts of energy collection as well as vibrating sources are explored.
一种基于MEMS的新型能量收集逻辑用于物联网辅助应用
在物联网(IoT)的帮助下,可以组织和操作由互联网连接的智能无线设备组成的庞大网络。在物联网设备中使用传统电池会产生安全风险、环境问题并缩短其使用寿命。通过对环境能源的收集和转化,可以实现物联网中无线和便携式设备所使用的可持续绿色电力。本研究考察了目前机械、光/太阳能、风能、声波、射频、生物力学和热释电能量收集方面的最新技术。因此,开发有效的存储和管理能源的方法对于物联网的发展至关重要。在本研究中,看看可能与物联网设备一起使用的几种能量收集方法,所有这些方法都基于MEMS(微机电系统)。物联网的一个组成部分是传感器网络,这反过来又需要无线能量传输。物联网一直在根据需要实施自主电力收集技术。基于MEMS的振动装置可以有效地从热波、振动波和电磁波中收集能量,这些都是常见的环境影响。探讨了能量收集和振动源的概念。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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