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Design of wearable system for closed-loop control of gait restoration system by Functional Electrical Stimulation

机译:功能电刺激设计步态恢复系统闭环系统的设计

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This paper describes design and test of a wearable FES system for the purpose of improving the performance of gait in patients with post-stroke. The prototype system that was developed includes electrical stimulator and sensor systems. Electrical stimulator was designed to generate pulse train that was realized using non-isolated boost converter. Sensor system was designed to measure gait phases that was realized using FSR sensors and to measure lower limb joint angles that was realized using a fusion of gyroscope and accelerometer-based tilt angle sensor. In order to remove measurement error due to bias error of the gyroscope and fluctuation of tilt sensor, Kalman filter was used to estimate true lower limb joint angles. Each system was tested separately. Testing was done by measuring the stimulator's output on the tibialis anterior muscle stimulation in normal subjects. The characteristics of pulse train in accordance with the desired specifications and capable of producing contractions in the tibialis anterior muscle. Sensor system was tested to measure gait parameters in subjects who walk normally. Comparison of the measured data with existing research data, showed the same pattern of the signal, the magnitude value is still in the standard deviation value of comparative data.
机译:本文介绍了可穿戴FES系统的设计和测试,以提高卒中后步态的性能。开发的原型系统包括电刺激器和传感器系统。设计电刺激器设计用于产生使用非隔离升压转换器实现的脉冲列车。设计传感器系统以测量使用FSR传感器实现的步态阶段,并测量使用陀螺仪和基于加速度计的倾斜角度传感器实现的下肢关节角度。为了除去由于陀螺仪的偏置误差和倾斜传感器的波动而导致的测量误差,卡尔曼滤波器用于估计真正的下肢关节角度。每个系统都被单独测试。通过测量刺激的刺激性在正常受试者中的胫骨前肌刺激上的输出来完成测试。根据所需规格和能够在胫骨前肌肉中产生收缩的脉冲串的特性。测试传感器系统以测量正常行走的受试者的步态参数。测量数据与现有研究数据的比较显示了信号的相同模式,幅度值仍处于比较数据的标准偏差值。

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