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Analytical Modeling and Simulation of an Electromagnetic Energy Harvester for Pulsating Fluid Flow in Pipeline

机译:管道中脉动流体流动电磁能量收割机的分析建模与仿真

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This paper presents the analytical modeling and simulation of an electromagnetic energy harvester (having linear behaviour) that generates power from pulsating fluid flow for pipeline condition monitoring systems. The modeled energy harvester is comprised of a cylindrical permanent magnet and a wound coil attached to a flexible membrane which oscillates due to the pulsating fluid flow in the pipe over which the prototype is considered to be mounted. In the harvester electrical energy is produced due to the relative motion between the coil and magnet. Based on the harvester’s architecture a lumped parameter model (single degree of freedom system) is developed and is simulated at different physical operational conditions. The simulation is performed at pressure amplitude of 625 Pa. When subjected to the operational frequency sweep, at the harvester’s resonant frequency (500 Hz) and damping ratio of 0.01, the devised model predicted the maximum open circuit voltage of 2.55 V and load voltage of 1.27 V. While operating under resonance, the maximum load voltage of 2.45 V is estimated at load resistance of 100 Ω. However, at an optimum load of 4.3 Ω, the simulation shows a production of 188151.2 μW power at a frequency of 500 Hz.
机译:本文介绍了电磁能量收割机(具有线性行为)的分析建模和模拟,从而产生来自管道状态监测系统的脉动流体流量的功率。所建模的能量收割机包括圆柱形永磁体和附接到柔性膜的卷绕线圈组成,该卷绕线圈由于管道上的管道中的脉动流体流而振荡而振荡。在收割机中,由于线圈和磁体之间的相对运动产生了电能。基于收割机的架构,开发了一个集总参数模型(单一自由度系统),并在不同的物理运行条件下模拟。在625Pa的压力幅度下进行仿真。当经过操作频率扫描时,在收集者的谐振频率(500Hz)和阻尼比为0.01时,设计的模型预测了2.55 V的最大开路电压和负载电压1.27 V.在共振运行时,估计在100Ω的负载电阻下估计2.45V的最大负载电压。然而,在最佳载荷为4.3Ω时,仿真显示为500Hz频率的188151.2μW功率的生产。

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