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Dynamic interactions of an integrated vehicle–electromagnetic energy harvester–tire system subject to uneven road excitations

机译:道路激励不均衡的车辆-电磁能量采集器-轮胎系统的动态相互作用

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摘要

An investigation is undertaken of an integrated mechanical-electromagnetic coupling system consisting of a rigid vehicle with heave, roll, and pitch motions, four electro-magnetic energy harvesters and four tires subject to uneven road excitations in order to improve the passengers' riding comfort and harvest the lost engine energy due to uneven roads. Following the derived mathematical formulations and the proposed solution approaches, the numerical simulations of this interaction system subject to a continuous sinusoidal road excitation and a single ramp impact are completed. The simulation results are presented as the dynamic response curves in the forms of the frequency spectrum and the time history, which reveals the complex interaction characteristics of the system for vibration reductions and energy harvesting performance. It has addressed the coupling effects on the dynamic characteristics of the integrated system caused by:(1) the natural modes and frequencies of the vehicle;(2) the vehicle rolling and pitching motions;(3) different road exci-tations on four wheels;(4) the time delay of a road ramp to impact both the front and rear wheels, etc., which cannot be tackled by an often used quarter vehicle model. The guide-lines for engineering applications are given. The developed coupling model and the revealed concept provide a means with analysis idea to investigate the details of four energy harvester motions for electromagnetic suspension designs in order to replace the current passive vehicle isolators and to harvest the lost engine energy. Potential further research directions are suggested for readers to consider in the future.
机译:对集成的机械电磁耦合系统进行了研究,该系统由具有起伏,侧倾和俯仰运动的刚性车辆,四个电磁能量采集器和四个受到不平整道路激励的轮胎组成,以提高乘客的乘坐舒适性和收集因道路不平而损失的发动机能量。根据推导的数学公式和提出的求解方法,完成了该交互系统在连续正弦道路激励和单匝道冲击下的数值模拟。仿真结果以频谱和时间历程的形式作为动态响应曲线呈现,揭示了系统在降低振动和收集能量方面的复杂相互作用特性。它解决了以下因素对集成系统动态特性的耦合影响:(1)车辆的自然模式和频率;(2)车辆的侧倾和俯仰运动;(3)四轮的不同路面激励;(4)道路坡道同时影响前后轮等的时间延迟,而通常使用的四分之一车辆模型无法解决。给出了工程应用指南。所开发的耦合模型和揭示的概念为分析悬架设计的四个能量收集器运动的细节提供了一种具有分析思想的手段,以便替换当前的被动车辆隔离器并收集损失的发动机能量。建议潜在的进一步研究方向,以供读者将来考虑。

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  • 来源
    《力学学报:英文版》 |2017年第002期|440-456|共17页
  • 作者单位

    Fluid Structure Interactions Group, FEE, University of Southampton, Southampton SO171BJ, UK;

    Fluid Structure Interactions Group, FEE, University of Southampton, Southampton SO171BJ, UK;

    Fluid Structure Interactions Group, FEE, University of Southampton, Southampton SO171BJ, UK;

    College of Shipbuilding Engineering, Harbin Engineering University, Harbin 150001, China;

    Fluid Structure Interactions Group, FEE, University of Southampton, Southampton SO171BJ, UK;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
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