通过环境振动和电容式换能器实现可持续能源技术的能量收集

Umar Jamil, Muhammad Sulaiman, Nouman Ghafoor, Mostafa Malmir, Faisal Nawaz, R. I. Shakoor
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引用次数: 1

摘要

作为第四次工业革命的一部分,低功耗电子设备需要能量收集系统为其运行提供能量,因为能量收集技术对于实现90%的无线传感器网络至关重要。虽然太阳能和热能收集是流行的方法,但它们有局限性,例如对阳光和热梯度的依赖,这使得它们对低瓦数的电子设备和无线传感网络不可靠。从环境振动中获取能量可以形成一个可持续的系统。目前,人们关注的焦点是不同的能量收集原理,如电磁、压电和静电。这项研究工作提出了一种新型的电力采集器设计,它使用三个平面内电容式换能器-间隙闭合,重叠变化和模式变化-在环境振动下作为输入能量工作。低水平的输入振动,设备移动,导致电容的变化和可靠的电力收集。设计分析包括电容、频率和机电评估,以获得电容矩阵、不同模式的固有频率、移动质量所覆盖的位移、电荷分布和压力分布。
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Power Harvesting towards Sustainable Energy Technology through Ambient Vibrations and Capacitive Transducers
As part of the fourth industrial revolution, low-power electronic devices require a power harvesting system to provide energy for their operation because energy harvesting technologies are crucial for enabling 90% of wireless sensor networks. While solar and thermal energy harvesting are popular methods, they have limitations such as dependence on sunlight and thermal gradients, which make them unreliable for low-wattage electronic equipment and wireless sensing networks. Power harvesting from ambient vibrations can lead to a sustainable system. Currently, there is a focus on different power harvesting principles such as electromagnetic, piezoelectric, and electrostatic. This research work presents a novel power harvester design that uses three in-plane capacitive transducers - gap-closing, overlap-varying, and pattern-varying - to operate under ambient vibrations as input energy. With low levels of input vibrations, the device moves, leading to changes in capacitance and the harvesting of reliable electrical power. The design analysis includes capacitance, frequency, and electromechanical evaluations to acquire capacitance matrices, natural frequencies for different modes, displacement covered by moving mass, charge distribution, and pressure distribution.
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