Talaei Fereshteh, Kargar Seyed Mohammad
Department of Electrical Engineering, Najafabad Branch, Islamic Azad University, Najafabad, Iran.
Smart Microgrid Research Center, Najafabad Branch, Islamic Azad University, Najafabad, Iran.
J Med Signals Sens. 2023 Mar 27;13(1):21-28. doi: 10.4103/jmss.jmss_116_21. eCollection 2023 Jan-Mar.
In this paper, the method of designing a noninvasive device for eliminating hand tremors in Parkinson's patients is presented. The designed device measures the tremors of the patient's hand and implements the tremor control accordingly. Since Parkinson's disease reduces patients' abilities to perform daily activities, this device is designed as an electronic spoon. The inertial measurement units are used to measure hand tremors.
The signals got from motion sensors are passed through Butterworth's second order low pass filters to attenuate signals amplitude at frequencies higher than the human hand's natural frequency. The signals are sent to a proposed Proportional Integral (PI) fuzzy controller as a set point signal, and appropriate control signals are applied to two actuators installed orthogonal. Besides motion sensors, a microcontroller is installed inside the spoon handle that implements a PI fuzzy controller and provides control signals for two high speed servo motors installed perpendicularly.
As such, the spoon can minimize the tremor effect. In this system, no damper or mass is added to the hand, and the patients are not required to wear an orthosis. The contribution of this paper is twofold. First, we use sensor data fusion to increase measurement accuracy. In this paper, we use accelerometer and gyroscope sensors. Second, we proposed a robust PI fuzzy controller to compensate for the uncertainties and reduce the tremor.
The test results show that the hand tremor of Parkinson's patients during eating is reduced up to 75% using this method.
本文介绍了一种用于消除帕金森病患者手部震颤的无创设备的设计方法。所设计的设备可测量患者手部的震颤并相应地实施震颤控制。由于帕金森病会降低患者进行日常活动的能力,因此该设备被设计成一把电子勺子。惯性测量单元用于测量手部震颤。
从运动传感器获取的信号通过巴特沃斯二阶低通滤波器,以衰减高于人手固有频率的信号幅度。这些信号作为设定点信号被发送到一个提出的比例积分(PI)模糊控制器,并将适当的控制信号施加到两个正交安装的执行器上。除了运动传感器外,在勺子手柄内部安装了一个微控制器,它实现一个PI模糊控制器,并为两个垂直安装的高速伺服电机提供控制信号。
这样,勺子可以将震颤影响降至最低。在该系统中,没有向手部添加阻尼器或质量块,并且患者无需佩戴矫形器。本文的贡献有两方面。第一,我们使用传感器数据融合来提高测量精度。在本文中,我们使用了加速度计和陀螺仪传感器。第二,我们提出了一种鲁棒的PI模糊控制器来补偿不确定性并减少震颤。
测试结果表明,使用该方法可将帕金森病患者进食时的手部震颤减少多达75%。