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通过电容感应增强电感应中的检测性能。

Enhanced detection performance in electrosense through capacitive sensing.

作者信息

Bai Yang, Neveln Izaak D, Peshkin Michael, MacIver Malcolm A

机构信息

Department of Mechanical Engineering, Northwestern University, Evanston, IL, USA.

出版信息

Bioinspir Biomim. 2016 Aug 8;11(5):055001. doi: 10.1088/1748-3190/11/5/055001.

Abstract

Weakly electric fish emit an AC electric field into the water and use thousands of sensors on the skin to detect field perturbations due to surrounding objects. The fish's active electrosensory system allows them to navigate and hunt, using separate neural pathways and receptors for resistive and capacitive perturbations. We have previously developed a sensing method inspired by the weakly electric fish to detect resistive perturbations and now report on an extension of this system to detect capacitive perturbations as well. In our method, an external object is probed by an AC field over multiple frequencies. We present a quantitative framework that relates the response of a capacitive object at multiple frequencies to the object's composition and internal structure, and we validate this framework with an electrosense robot that implements our capacitive sensing method. We define a metric for comparing the electrosensory range of different underwater electrosense systems. For detecting non-conductive objects, we show that capacitive sensing performs better than resistive sensing by almost an order of magnitude using this measure, while for conductive objects there is a four-fold increase in performance. Capacitive sensing could therefore provide electric fish with extended sensing range for capacitive objects such as prey, and gives artificial electrolocation systems enhanced range for targets that are capacitive.

摘要

弱电鱼向水中发射交流电场,并利用皮肤上的数千个传感器来检测周围物体引起的电场扰动。这种鱼的主动电感应系统使它们能够利用用于电阻性和电容性扰动的不同神经通路和感受器来导航和捕猎。我们之前开发了一种受弱电鱼启发的传感方法来检测电阻性扰动,现在报告该系统的扩展,使其也能检测电容性扰动。在我们的方法中,通过多个频率的交流电场探测外部物体。我们提出了一个定量框架,将电容性物体在多个频率下的响应与物体的组成和内部结构联系起来,并用一个实现我们电容性传感方法的电感应机器人验证了这个框架。我们定义了一个用于比较不同水下电感应系统电感应范围的指标。对于检测非导电物体,我们表明使用该指标电容性传感比电阻性传感性能几乎提高了一个数量级,而对于导电物体性能提高了四倍。因此,电容性传感可以为弱电鱼提供对诸如猎物等电容性物体的扩展感应范围,并为人工电定位系统提供对电容性目标的增强探测范围。

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