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Development of power driver for vibration generator of bionic-like feedback for smart prosthesis

机译:智能假体仿生反馈振动发生器的动力驱动器开发

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According to World Health Organization data about one billion of people worldwide are disabled people. About one third of these people are people with mobility or movements impairments. First problem is that for that kind of people high precision prosthetic devices with neural control and feedback are very expensive. Second problem almost all average price prosthetic devices have visual feedback system which loads user vision. To solve these two problems it was decided to develop prosthetic devices with other kind of feedback systems: thermal, electrical, pressure, vibration...etc. A vibro-tactile test bench was developed to evaluate vibration feedback systems. Vibro-tactile test bench works in wide range of frequencies and magnitudes. The main goal of the presented paper is to define the most optimal power driver. As main parameter is chosen acceleration magnitude dependence on frequency and input signal magnitude. Three possible solutions were tested: direct connection to analog discovery kit, connection trough A - type audio amplifier and connection trough B - type audio amplifier. As result the most optimal solution was A - type amplifier. It has unipolar supply, and output signal value is the same as for B - type amplifier..
机译:根据世界卫生组织的数据,全世界约有十亿人是残疾人。这些人中约有三分之一是行动不便或行动不便的人。第一个问题是,对于这类人来说,具有神经控制和反馈功能的高精度假肢设备非常昂贵。第二个问题是几乎所有平均价格的假肢设备都具有视觉反馈系统,该系统会加载用户的视觉。为了解决这两个问题,决定开发具有其他类型的反馈系统的假体设备:热,电,压力,振动等。开发了一个振动触觉测试台来评估振动反馈系统。振动触觉测试台可在各种频率和大小范围内工作。本文的主要目的是定义最佳的电源驱动器。作为主要参数,选择加速度幅度取决于频率和输入信号幅度。测试了三种可能的解决方案:直接连接到模拟发现套件,连接槽A型音频放大器和连接槽B型音频放大器。结果,最佳的解决方案是A型放大器。它具有单极性电源,并且输出信号值与B型放大器相同。

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