首页> 外文期刊>Systems, Man, and Cybernetics, Part B: Cybernetics, IEEE Transactions on >A Method to Measure the Relationship Between Biodynamic Feedthrough and Neuromuscular Admittance
【24h】

A Method to Measure the Relationship Between Biodynamic Feedthrough and Neuromuscular Admittance

机译:一种测量生物动力传递与神经肌肉导纳关系的方法

获取原文
获取原文并翻译 | 示例

摘要

Biodynamic feedthrough (BDFT) refers to a phenomenon where accelerations cause involuntary limb motions, which can result in unintentional control inputs that can substantially degrade manual control. It is known that humans can adapt the dynamics of their limbs by adjusting their neuromuscular settings, and it is likely that these adaptations have a large influence on BDFT. The goal of this paper is to present a method that can provide evidence for this hypothesis. Limb dynamics can be described by admittance, which is the causal dynamic relation between a force input and a position output. This paper presents a method to simultaneously measure BDFT and admittance in a motion-based simulator. The method was validated in an experiment. Admittance was measured by applying a force disturbance signal to the control device; BDFT was measured by applying a motion disturbance signal to the motion simulator. To allow distinguishing between the operator's responses to each disturbance signal, the perturbation signals were separated in the frequency domain. To show the impact of neuromuscular adaptation, subjects were asked to perform three different control tasks, each requiring a different setting of the neuromuscular system (NMS). Results show a dependence of BDFT on neuromuscular admittance: A change in neuromuscular admittance results in a change in BDFT dynamics. This dependence is highly relevant when studying BDFT. The data obtained with the proposed measuring method provide insight in how exactly the settings of the NMS influence the level of BDFT. This information can be used to gain fundamental knowledge on BDFT and also, for example, in the development of a canceling controller.
机译:生物动力馈通(BDFT)是指一种现象,其中的加速度会导致肢体不自主运动,从而可能导致无意的控制输入,从而大大降低了手动控制的性能。众所周知,人类可以通过调节其神经肌肉设置来适应四肢的动态,并且这些适应对BDFT的影响很大。本文的目的是提出一种可以为该假设提供证据的方法。肢体动力学可以通过导纳来描述,导纳是力输入和位置输出之间的因果关系。本文提出了一种在基于运动的模拟器中同时测量BDFT和导纳的方法。该方法在实验中得到验证。通过向控制装置施加力干扰信号来测量导纳;通过向运动模拟器施加运动干扰信号来测量BDFT。为了区分操作员对每个干扰信号的响应,在频域中将干扰信号分开。为了显示神经肌肉适应的影响,要求受试者执行三项不同的控制任务,每项任务都需要神经肌肉系统(NMS)的不同设置。结果表明BDFT对神经肌肉导纳的依赖性:神经肌肉导纳的变化导致BDFT动态的变化。在研究BDFT时,这种依赖性非常相关。通过所提出的测量方法获得的数据可洞悉NMS的设置如何精确影响BDFT的水平。该信息可用于获得有关BDFT的基础知识,例如,还可用于开发取消控制器。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号