Design of vibratory MEMS gyroscope for gait phase detection system

S. Kumar, P. S. Gobinath, S. Prasanth, P. Prasanth
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Abstract

The main objective of this project is to design a MEMS Vibratory gyroscope. A gyroscope is a device used for measuring or maintaining orientation, based on the principle of angular momentum. MEMS gyroscopes are gaining popularity because of their high accuracy and low manufacturing costs in large quantities. Gyroscopes can also be used for detecting and monitoring Gait phase detection system (GPDS). In case of Gait phase movement asymmetry is one of the motor symptoms. Improper Gait phase is the disorder of the central nervous system due to Structural defect walking pattern. Gait phase of a person is important to know which plays a number of important physiological roles. Once Improper Gait phase detected at an early stage by the use of MEMS vibrating gyroscopes, patients are alerted with signals in order to prevent the fall.
步态相位检测系统的振动MEMS陀螺仪设计
本课题的主要目标是设计一个MEMS振动陀螺仪。陀螺仪是一种基于角动量原理,用来测量或保持方向的装置。MEMS陀螺仪因其高精度和低批量制造成本而越来越受欢迎。陀螺仪也可用于检测和监控步态相位检测系统(GPDS)。步态相运动不对称是运动症状之一。步态异常是由于行走方式的结构性缺陷而引起的中枢神经系统紊乱。了解一个人的步态阶段是很重要的,它起着许多重要的生理作用。一旦使用MEMS振动陀螺仪在早期阶段检测到步态不正确阶段,患者就会收到信号警报,以防止跌倒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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