Ahn Sejoon, Kim DaeEun
Biological Cybernetics Lab, School of Electrical and Electronic Engineering, Yonsei University, Shinchon, Seoul 120-749, Korea.
Sensors (Basel). 2017 Jul 19;17(7):1659. doi: 10.3390/s17071659.
Rats use their whiskers as tactile sensors to sense their environment. Active whisking, moving whiskers back and forth continuously, is one of prominent features observed in rodents. They can discriminate different textures or extract features of a nearby object such as size, shape and distance through active whisking. There have been studies to localize objects with artificial whiskers inspired by rat whiskers. The linear whisker model based on beam theory has been used to estimate the radial distance, that is, the distance between the base of the whisker and a target object. In this paper, we investigate deflection angle measurements instead of forces or moments, based on a linear tapered whisker model to see the role of tapered whiskers found in real animals. We analyze how accurately this model estimates the radial distance, and quantify the estimation errors and noise sensitivity. We also compare the linear model simulation and nonlinear numerical solutions. It is shown that the radial distance can be estimated using deflection angles at two different positions on the tapered whisker. We argue that the tapered whisker has an advantage of estimating the radial distance better, as compared to an untapered whisker, and active sensing allows that estimation without the whisker's material property and thickness or the moment at base. In addition, we investigate the potential of passive sensing for tactile localization.
大鼠利用它们的胡须作为触觉传感器来感知周围环境。主动动须,即不断地来回移动胡须,是啮齿动物中观察到的一个显著特征。它们可以通过主动动须来区分不同的质地或提取附近物体的特征,如大小、形状和距离。已经有研究利用受大鼠胡须启发的人造胡须来定位物体。基于梁理论的线性胡须模型已被用于估计径向距离,即胡须基部与目标物体之间的距离。在本文中,我们基于线性锥形胡须模型研究偏转角测量而非力或力矩,以了解在真实动物中发现的锥形胡须的作用。我们分析该模型对径向距离的估计有多准确,并量化估计误差和噪声敏感性。我们还比较了线性模型模拟和非线性数值解。结果表明,可以使用锥形胡须上两个不同位置的偏转角来估计径向距离。我们认为,与非锥形胡须相比,锥形胡须在更好地估计径向距离方面具有优势,并且主动传感允许在不考虑胡须的材料特性、厚度或基部力矩的情况下进行估计。此外,我们研究了被动传感用于触觉定位的潜力。