论文标题
评估由信号无关噪声驱动的非集中力反馈
Evaluation of Non-Collocated Force Feedback Driven by Signal-Independent Noise
论文作者
论文摘要
患有瘫痪或截肢的人可以根据自己的意图或尝试移动的意图来操作机器人假体。由于这些个体中的感觉函数丢失或降低,因此必须无触觉反馈。皮质内脑计算机界面(IBCI)为瘫痪者提供了各种神经假体。 IBCI的一个重要属性是其输入信号包含信号无关的噪声。为了了解信号无关的噪声对具有非集体触觉反馈的系统的影响,并告知基于IBCI的假体控制策略,我们进行了一个实验,以常规的触觉界面作为IBCI的代理。健全的用户的任务是使用右手输入在虚拟环境中找到凹痕。虚拟环境中相互作用力的非集中触觉反馈通过三个不同幅度的噪音增强,并同时在用户的左手上呈现。我们发现,与其他两个级别相比,我们发现压痕位置猜测的距离猜测增加了最高噪声水平的平均峰值绝对位移和工具运动的速度。调查结果表明,用户具有扰动拒绝的门槛,他们试图通过探索性的行动来提高信噪比。
Individuals living with paralysis or amputation can operate robotic prostheses using input signals based on their intent or attempt to move. Because sensory function is lost or diminished in these individuals, haptic feedback must be non-collocated. The intracortical brain computer interface (iBCI) has enabled a variety of neural prostheses for people with paralysis. An important attribute of the iBCI is that its input signal contains signal-independent noise. To understand the effects of signal-independent noise on a system with non-collocated haptic feedback and inform iBCI-based prostheses control strategies, we conducted an experiment with a conventional haptic interface as a proxy for the iBCI. Able-bodied users were tasked with locating an indentation within a virtual environment using input from their right hand. Non-collocated haptic feedback of the interaction forces in the virtual environment was augmented with noise of three different magnitudes and simultaneously rendered on users' left hands. We found increases in distance error of the guess of the indentation location, mean time per trial, mean peak absolute displacement and speed of tool movements during localization for the highest noise level compared to the other two levels. The findings suggest that users have a threshold of disturbance rejection and that they attempt to increase their signal-to-noise ratio through their exploratory actions.