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Energetically Passive Multi-Degree-of-Freedom Hydraulic Human Power Amplifier With Assistive Dynamics

机译:具有辅助动态的高力无源自由度自由度液压人力功率放大器

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This paper develops a control approach for a multi-degree-of-freedom (DoF) hydraulic human power amplifier (HHPA) which is a tool with which a human interacts physically. The control objective is to use the hydraulic actuators to amplify the human force while ensuring that the closed-loop system is energetically passive with respect to a scaled human and environment input power, so as to enhance the safety and coupling stability. A multi-DoF virtual velocity coordination approach is used to recast the force control problem as one of coordination between the velocities of fictitious inertia and of the HHPA. To aid the human to perform specific tasks, additional passive assistance dynamics are incorporated to include a passive velocity field controller (PVFC) for path guidance, and an artificial potential field for obstacle avoidance (OA). Control of the hydraulic actuators is defined by a passivity-based controller that considers the natural energy storage of the hydraulic actuators to fully account for the nonlinear pressure dynamics. The controllers specify the required flows which are then satisfied by either a servo-valve or an energy efficient hydraulic transformer. Experimental results demonstrate good control performance and effective task assistance.
机译:本文开发了一种用于多自由度(DOF)液压人力功率放大器(HHPA)的控制方法,这是一种人类在物理上相互作用的工具。控制目标是使用液压致动器来放大人力,同时确保闭环系统相对于缩放的人和环境输入功率能够充满活力,以提高安全性和耦合稳定性。多DOF虚拟速度协调方法用于重新控制力控制问题作为虚构惯性和HHPA的速度之间的协调之一。为了帮助人们执行特定任务,额外的被动辅助动态被纳入包括用于路径引导的被动速度场控制器(PVFC),以及用于避免障碍物(OA)的人工势域。液压致动器的控制由基于被动的控制器限定,该控制器认为液压致动器的自然能量存储器完全考虑非线性压力动力学。控制器指定所需的流量,然后通过伺服阀或节能液压变压器满足。实验结果表明了良好的控制性能和有效的任务援助。

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