论文标题

评估具有视觉传感能力的下肢假体的嵌入式平台

Evaluation of Embedded Platforms for Lower Limb Prosthesis with Visual Sensing Capabilities

论文作者

da Silva, Rafael L., Starliper, Nathan, Zhong, Boxuan, Huang, He Helen, Lobaton, Edgar

论文摘要

下肢假体可以从能够应用计算机视觉技术的嵌入式系统中受益,以增强自主控制和上下文意识,以实现智能决策。 In order to fill in the gap of current literature of autonomous systems for prosthetic legs employing computer vision methods, we evaluate the performance capabilities of two off-the-shelf platforms, the Jetson TX2 and Raspberry Pi 3, by assessing their CPU load, memory usage, run time and classification accuracy for different image sizes and widespread computer vision algorithms.我们利用使用安装在腿上的相机的图像来收集的数据集,该数据集可以使下肢假体具有上下文意识。我们表明,鉴于相当大的图像和适当的框架选择方法,可以识别受试者将要踏上的地形,并有可能重建表面并获得其倾斜度。这是一个配备有嵌入式摄像头和惯性测量单元的建议系统的一部分,可识别不同类型的地形并估算受试者前面的表面斜率。

Lower limb prosthesis can benefit from embedded systems capable of applying computer vision techniques to enhance autonomous control and context awareness for intelligent decision making. In order to fill in the gap of current literature of autonomous systems for prosthetic legs employing computer vision methods, we evaluate the performance capabilities of two off-the-shelf platforms, the Jetson TX2 and Raspberry Pi 3, by assessing their CPU load, memory usage, run time and classification accuracy for different image sizes and widespread computer vision algorithms. We make use of a dataset that we collected for terrain recognition using images from a camera mounted on a leg, which would enable context-awareness for lower limb prosthesis. We show that, given reasonably large images and an appropriate frame selection method, it is possible to identify the terrain that a subject is going to step on, with the possibility of reconstructing the surface and obtaining its inclination. This is part of a proposed system equipped with an embedded camera and inertial measurement unit to recognize different types of terrain and estimate the slope of the surface in front of the subject.

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