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Efficient Implementation and Design of a New Single-Channel Electrooculography-Based Human–Machine Interface System

机译:基于单通道眼电学的新型人机界面系统的高效实现和设计

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摘要

This brief introduces a new and practical human–machine interface (HMI) system based on single-channel electrooculography (EOG) signals. The proposed system uses a consumer wireless recording device to collect EOG and employs new encoding/decoding paradigms to convey users' intentions with EOG from eye movements including blinking and looking up. The simplicity and mobility of the system provides a comfortable and practical solution to HMI. Furthermore, to reduce the hardware complexity and power consumption of the signal processing modules of the EOG-based HMI system, a novel multiplierless implementation is developed, where all the algorithms involved, such as bandpass filtering, wavelet filtering, and support vector machine, can be realized using a limited number of adders and shifters only. Experimental results show that the proposed system offers a simple, practical, and yet reliable EOG-based HMI with low complexity and power consumption.
机译:本文简要介绍了一种基于单通道眼电图(EOG)信号的新型实用人机界面(HMI)系统。所提出的系统使用消费者无线记录设备来收集EOG,并采用新的编码/解码范例来通过眼睛运动(包括眨眼和抬头)传达用户对EOG的意图。系统的简单性和可移动性为HMI提供了舒适实用的解决方案。此外,为了降低基于EOG的HMI系统的信号处理模块的硬件复杂性和功耗,开发了一种新颖的无乘法器实现,其中涉及的所有算法(例如带通滤波,小波滤波和支持向量机)都可以仅使用有限数量的加法器和移位器即可实现。实验结果表明,所提出的系统提供了一种简单,实用且可靠的基于EOG的HMI,具有较低的复杂度和功耗。

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