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Electromechanical active suspension demonstration for off-road vehicles

机译:越野车的机电主动悬架演示

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The University of Texas Center for Electromechanics (UT-CEM) has been developing active suspension technology for off-road and on-road vehicles since 1993. The UT-CEM approach employs fully controlled electromechanical (EM) actuators to control vehicle dynamics and passive springs to efficiently support vehicle static weight. The program has completed three phases (full-scale, proof-of-principle demonstration on a quarter-car test rig; algorithm development on a four-corner test rig; and advanced EM linear actuator development) and is engaged in a full-vehicle demonstration phase. Two full- vehicle demonstrations are in progress: an off-road demonstration on a high mobility multiwheeled vehicle (HMMWV) and an on-road demonstration on a transit bus. HMMWV test results are indicating significant reductions in vehicle sprung mass accelerations with simultaneous increases in cross-country speed when compared to conventional passive suspension systems. Additionally, original projections of low power requirements for suspension actuators are being confirmed. The 3,400 kg (3.75 ton) vehicle being tested utilizes a 5 kW alternator to provide suspension power. Power conditioning circuits limit the continuous deliverable power to 4 kW, which corresponds to 1.2 kW/metric ton (1.45 hp/ton).
机译:自1993年以来,德克萨斯州机电大学(UT-CEM)一直在为越野和路上车辆开发积极的悬架技术。UT-CEM方法采用完全控制的机电(EM)执行器来控制车辆动力学和被动弹簧有效地支持车辆静态重量。该计划已完成三个阶段(满市,在四分之一车试验台上的全部校验示范;四角试验台上的算法开发;和先进的EM线性执行器开发),并从事全车辆演示阶段。两位全车展都正在进行中:高流动性乘以车辆(HMMWV)的越野演示以及在运输总线上的一路演示。 HMMWV测试结果表明与传统的无源悬架系统相比,在越野速度的同时增加的车辆簧上批量加速度的显着减少。另外,正在确认悬架执行器的低功耗要求的原始投影。测试的3,400千克(3.75吨)的车辆采用5千瓦交流发电机提供悬架电源。功率调节电路将连续可交付功率限制为4 kW,其对应于1.2千瓦/公吨(1.45 HP /吨)。

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