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Design of inductive sensors for tongue control system for computers and assistive devices.

机译:电脑和辅助设备舌控制系统电感传感器的设计。

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PURPOSE: The paper introduces a novel design of air-core inductive sensors in printed circuit board (PCB) technology for a tongue control system. The tongue control system provides a quadriplegic person with a keyboard and a joystick type of mouse for interaction with a computer or for control of an assistive device. METHOD: Activation of inductive sensors was performed with a cylindrical, soft ferromagnetic material (activation unit). Comparative analysis of inductive sensors in PCB technology with existing hand-made inductive sensors was performed with respect to inductance, resistance, and sensitivity to activation when the activation unit was placed in the center of the sensor. Optimisation of the activation unit was performed in a finite element model. RESULTS: PCBs with air-core inductive sensors were manufactured in a 10 layers, 100 microm and 120 microm line width technology. These sensors provided quality signals that could drive the electronics of the hand-made sensors. Furthermore, changing the geometry of the sensors allowed generation of variable signals correlated with the 2D movement of the activation unit at the sensors' surface. CONCLUSION: PCB technology for inductive sensors allows flexibility in design, automation of production and ease of possible integration with supplying electronics. The basic switch function of the inductive sensor can be extended to two-dimensional movement detection for pointing devices.
机译:目的:本文介绍了一种新颖的印刷电路板(PCB)技术的内核电感传感器设计,用于舌控制系统。舌控制系统提供了具有键盘的四极性人和操纵杆类型的鼠标,用于与计算机进行交互或控制辅助设备。方法:用圆柱形软磁性材料(活化单元)进行电感传感器的激活。在将激活单元放置在传感器的中心时,对具有现有手工电感传感器的PCB技术在PCB技术中的电感传感器对具有现有手工感应传感器的感应传感器。在有限元模型中执行激活单元的优化。结果:带空心电感传感器的PCB在10层,100微米和120微米宽度技术中制造。这些传感器提供了可以驱动手工制造传感器的电子产品的质量信号。此外,改变传感器的几何形状允许产生与传感器表面上的激活单元的2D移动相关的可变信号。结论:电感传感器PCB技术允许灵活性设计,生产自动化和易于与供应电子设备集成的。电感传感器的基本开关功能可以扩展到指向设备的二维运动检测。

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