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Optimal Anti-vibration Design of Vehicle-mounted Vibration Isolation Platform

机译:车载振动隔离平台的最佳防振设计

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A vehicle-mounted anti-vibration system is designed to semi-actively reduce accelerations acting on vibration isolation platform under different road conditions. To provide the basis for optimal anti-vibration design, the kinematics and dynamics of the platform are analyzed to investigate the relationship between leg length, strength, the platform position and vibration properties. As the platform is fixed on vehicle, a combined vehicle-platform model is necessary for verifying the performance and applying some suitable control algorithms. Also, typical digital testing roads will be built using road load spectrum. To optimize the platform parameters, especially stiffness and damping, an active control system is designed at first. An anti-vibration system including a semi-active inerter is designed to match the control forces which are calculated from the above active system. Finally, optimal anti-vibration system of the vehicle mounted platform which also considers the vehicle performances is done. Acceleration acting on the platform has been reduced. These results will be utilized for an intelligent active anti-vibration platform in future.
机译:车载的防振系统设计用于在不同的道路条件下半积极减少作用于振动隔离平台的加速度。为了提供最佳的抗振动设计的基础上,该平台的运动学和动力学进行分析以调查腿长度,强度,平台位置和振动特性之间的关系。由于平台固定在车辆上,因此组合的车辆平台模型对于验证性能并应用一些合适的控制算法是必要的。此外,典型的数字测试道路将使用道路载波谱构建。为了优化平台参数,特别是刚度和阻尼,首先设计了一个有源控制系统。包括半主动活动器的抗振系统被设计成匹配由上述有源系统计算的控制力。最后,完成了车辆安装平台的最佳抗振系统,该平台也进行了实施车辆性能。减少了在平台上的加速度。这些结果将用于将来智能主动防振平台。

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