A fiber optic microbend tactile sensor array

D.T. Jenstrom, Chin-Lin Chen
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引用次数: 40

Abstract

A new design for a fiber optic tactile sensor array is presented. In this design, optical fibers are used both as the actual force-sensing elements and as the signal-transmission media. The tactile array is formed by appropriately arranging fibers into four overlapping layers, two active layers sand- wiched between two corrugation layers, forming a two-dimensional grid of fibers. When force is imparted to a given fiber intersection, small dis- tortions (microbend) appear in the stressed fibers, resulting in decreases in transmitted light intensity in these fibers. A prototype sensor of this type has been constructed and tested. Comparison of the test results to desired tactile sensor charac- teristics and to a popular commercially available tactile sensor indicate that the prototype sensor performs very well, out-performing the commer- cial sensor in a number of the tested categories.

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一种光纤微弯触觉传感器阵列
提出了一种新型光纤触觉传感器阵列的设计方案。在本设计中,光纤既用作实际力感元件,又用作信号传输介质。触觉阵列是通过将纤维适当地排列成四个重叠的层而形成的,其中两个活动层夹在两个波纹层之间,形成一个二维纤维网格。当对给定的纤维交叉点施加力时,应力纤维中会出现小的扭曲(微弯曲),导致这些纤维中的透射光强度降低。这种类型的原型传感器已经构建和测试。将测试结果与期望的触觉传感器特性和流行的商用触觉传感器进行比较,表明原型传感器性能非常好,在许多测试类别中都优于商用传感器。
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