首页> 外文会议>Design Automation Conference (DAC), 2012 49th ACM/EDAC/IEEE >Implementing an FPGA system for real-time intent recognition for prosthetic legs
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Implementing an FPGA system for real-time intent recognition for prosthetic legs

机译:实施FPGA系统以实时识别假肢意图

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This paper presents the design and implementation of a cyber physical system (CPS) for neural-machine interface (NMI) that continuously senses signals from a human neuromuscular control system and recognizes the user's intended locomotion modes in real-time. The CPS contains two major parts: a microcontroller unit (MCU) for sensing and buffering input signals and an FPGA device as the computing engine for fast decoding and recognition of neural signals. The real-time experiments on a human subject demonstrated its real-time, self-contained, and high accuracy in identifying three major lower limb movement tasks (level-ground walking, stair ascent, and standing), paving the way for truly neural-controlled prosthetic legs.
机译:本文介绍了用于神经机器接口(NMI)的电子物理系统(CPS)的设计和实现,该系统可连续感应来自人类神经肌肉控制系统的信号并实时识别用户的预期运动方式。 CPS包含两个主要部分:用于感测和缓冲输入信号的微控制器单元(MCU),以及作为计算引擎的FPGA器件,用于快速解码和识别神经信号。对人体进行的实时实验证明了其实时性,独立性和高准确性,可以识别三个主要的下肢运动任务(平地行走,爬楼梯和站立),从而为真正的神经活动铺平了道路。受控的假肢腿。

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