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Design and Development of an EOG-based System to Control Electric Wheelchair for People Suffering from Quadriplegia or Quadriparesis

机译:基于EOG的系统控制电动轮椅的设计与开发,用于患有四肢瘫痪或四轮节内核的人

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In this research, we have designed and developed an EOG-based Electric Wheelchair system for patients suffering from Quadriplegia or Quadriparesis or similar condition where a person is not only unable to walk but also unable to move fingers to press a button. The designed EOG recorder is used to capture intentional eye blink and eye movements (i.e. EOG signals) performed by the patient sitting in the Wheelchair. The recorded EOG signals are then processed in Arduino platform and converted to command signals to control the movement of the wheelchair in four directions (i.e. left, right, front and back) from four different EOG signals (i.e. left, right, up and down eye movements) along with start and stop commands from intentional eye blink signals. The electric wheelchair is also designed and implemented by converting a normal chair to wheelchair with necessary motors (2 DC brushed motors), wheels, and control circuitry along with the battery power supply. The EOG system is portable, wireless and user friendly which can be worn by the patient to control the wheelchair. Test experiment with subjects suggests that the proposed EOG system can detect different eye movements with an average accuracy of 90% in controlling the wheelchair. The overall cost of the developed system is around 20,000 BDT which is affordable. The proposed system has a huge potential to be used by our country's rural and middle-income people suffering from similar disability who can't afford commercially available expensive automated electric wheelchairs. This work can be further modified to use in other applications for the same type of patients such as EOG controlled mouse cursor for computer use. Thus this EOG-based human-machine interface applications can significantly enhance the quality of life for such middle-income or lower-middle income patients living in the developing countries such as Bangladesh.
机译:在这项研究中,我们设计并开发了一种基于EOG的电动轮椅系统,适用于患有四肢瘫痪或四面进的患者或类似条件的患者,其中一个人不仅无法行走,而且无法移动手指以按下按钮。设计的EOG记录器用于捕获由坐在轮椅上的患者执行的故意眼闪烁和眼睛运动(即EOG信号)。然后将录制的EOG信号在Arduino平台中处理,并转换为命令信号,以控制轮椅在四个方向(即左,右,前后)的运动,从四个不同的EOG信号(即左,右侧,上下眼睛移动)以及从故意眼闪烁信号的开始和停止命令。电动轮椅还通过将正常椅子转换为轮椅设计和实现,具有必要的电机(2 DC刷电机),车轮和控制电路以及电池电源。 EOG系统是便携式的,无线和用户友好,患者可以佩戴,以控制轮椅。具有主题的测试实验表明,所提出的EOG系统可以检测控制轮椅的平均精度为90 %的不同眼球运动。发达系统的整体成本约为20,000个BDT,实惠。拟议的系统具有巨大的潜力,遭受类似残疾的国家的农村和中等收入人民不能提供商业上可获得的昂贵的自动电动轮椅。可以进一步修改该工作以用于相同类型的患者,例如Eog受控鼠标光标进行计算机使用。因此,基于EOG的人机界面应用可以显着提高生活在孟加拉国等发展中国家的中等收入或中低收入患者的生活质量。

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