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首页> 外文期刊>Journal of intelligent material systems and structures >Energy harvester for vehicle tires: Nonlinear dynamics and experimental outcomes
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Energy harvester for vehicle tires: Nonlinear dynamics and experimental outcomes

机译:车胎能量采集器:非线性动力学和实验结果

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摘要

This article presents a very compact electromechanical wideband energy harvester optimized for tire applications. The device exploits an asymmetric magnetic spring to be adaptive and effective at almost any vehicle speed. The device has been simulated through an experimentally validated SIMULINK block-oriented model. The simulation takes into account nonlinear dynamic and adaptive resonant behavior of the seismic mass, electromagnetic, and magnetostatic coupling between floating magnetic mass and coils, and the transfer of the generated power to an external load by means of a nonlinear circuit interface. A particular focus on the pneumatic effect on the floating magnet has been made. A convenient choice of clearance between moving and fixed parts can be used to create an effective air brake preventing or softening shocks with end stops and to modify system dynamic. A nonlinear equivalent spring dashpot model of the pneumatic effect and a method to estimate its parameters from geometry have been proposed. An analysis of different nonlinearities of the system at different vehicle speed and a study on the combined effect of softening and hardening behavior of the device have been performed and discussed.
机译:本文介绍了一种非常紧凑的机电宽带能量采集器,针对轮胎应用进行了优化。该设备利用不对称磁性弹簧在几乎任何车速下都具有自适应性和有效性。该设备已通过经过实验验证的SIMULINK面向块的模型进行了仿真。该模拟考虑了地震质量的非线性动态和自适应共振行为,浮动磁质量与线圈之间的电磁耦合和静磁耦合,以及通过非线性电路接口将生成的功率传输到外部负载的情况。特别关注了对浮动磁铁的气动作用。在移动部件与固定部件之间的间隙选择比较方便,可用于创建有效的空气制动器,以防止或减轻末端挡块的冲击并改变系统动态。提出了气动效应的非线性等效弹簧阻尼器模型和一种根据几何形状估算其参数的方法。对不同车速下系统的不同非线性进行了分析,并对装置的软化和硬化行为进行了综合研究。

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