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FES controller design based on threshold control theory for single joint movement

机译:基于阈值控制理论的单关节运动FES控制器设计

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The threshold control theory is applied to build a physiology-based FES controller. The proposed control strategy is tested in simulation study with an integrated musculoskeletal model. The results suggest that the controller based on the threshold control theory alone can realize the task with small feedback delays. However, it is not capable to produce the movement fast enough to match the desired trajectory. Thus two extensions to improve the performance are proposed. Firstly, the feedback on actual movement velocity is replaced by the differences between the actual and desired velocities. Secondly, the feedback of joint angular acceleration is introduced to calculate the dynamic threshold. Simulation results suggest that such extensions can 1) improve the movement speed; 2) reduce the response time; and 3) reduce influence of external perturbation and feedback delays.
机译:阈值控制理论被应用于构建基于生理的FES控制器。所提出的控制策略已在模拟研究中使用集成的肌肉骨骼模型进行了测试。结果表明,仅基于阈值控制理论的控制器就可以实现具有较小反馈延迟的任务。然而,它不能足够快地产生运动以匹配期望的轨迹。因此,提出了两个扩展来提高性能。首先,关于实际运动速度的反馈被实际和期望速度之间的差异所代替。其次,引入关节角加速度的反馈来计算动态阈值。仿真结果表明,这种扩展可以:1)提高运动速度; 2)减少响应时间; 3)减少外部干扰和反馈延迟的影响。

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