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首页> 外文期刊>Journal of Mechanisms and Robotics: Transactions of the ASME >A Maneuver Based Design of a Passive-Assist Device for Augmenting Active Joints
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A Maneuver Based Design of a Passive-Assist Device for Augmenting Active Joints

机译:基于机动的主动关节主动辅助装置设计

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摘要

This paper describes a novel, general methodology for designing a parallel, passive-assist device to augment an active system using optimization based on a known maneuver of the active system. Implementation of the passive-assist device can result in an improvement in system performance with respect to efficiency, reliability, and/or utility. The methodology is demonstrated with a torsional spring designed to minimize energy consumption of a prototypical unmanned ground vehicle robot arm. Initial results indicate that this procedure can reduce maximum required torque by ~50% and energy consumed by as much as 25%. The proposed method is experimentally verified and compared to other state-of-the-art design approaches.
机译:本文介绍了一种新颖的通用方法,该方法可使用基于有源系统的已知操作进行优化来设计并联无源辅助设备以增强有源系统。无源辅助设备的实现可以在效率,可靠性和/或效用方面导致系统性能的改善。该方法通过扭力弹簧进行了演示,扭力弹簧旨在最大程度地减少原型无人地面车辆机器人手臂的能耗。初步结果表明,该程序可以将最大所需扭矩降低约50%,并将能量消耗降低多达25%。该方法经过实验验证,并与其他最新设计方法进行了比较。

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