Tongrod Nattapong, Lokavee Shongpun, Watthanawisuth Natthapol, Tuantranont Adisorn, Kerdcharoen Teerakiat
Materials Science and Engineering Programme, Faculty of Science, Mahidol University, Bangkok, Thailand.
Disabil Rehabil Assist Technol. 2013 Mar;8(2):115-20. doi: 10.3109/17483107.2012.737540.
Current trends in Human-Computer Interface (HCI) have brought on a wave of new consumer devices that can track the motion of our hands. These devices have enabled more natural interfaces with computer applications. Data gloves are commonly used as input devices, equipped with sensors that detect the movements of hands and communication unit that interfaces those movements with a computer. Unfortunately, the high cost of sensor technology inevitably puts some burden to most general users. In this research, we have proposed a low-cost data glove concept based on printed polymeric sensor to make pressure and bending sensors fabricated by a consumer ink-jet printer. These sensors were realized using a conductive polymer (poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) [PEDOT:PSS]) thin film printed on glossy photo paper. Performance of these sensors can be enhanced by addition of dimethyl sulfoxide (DMSO) into the aqueous dispersion of PEDOT:PSS. The concept of surface resistance was successfully adopted for the design and fabrication of sensors. To demonstrate the printed sensors, we constructed a data glove using such sensors and developed software for real time hand tracking. Wireless networks based on low-cost Zigbee technology were used to transfer data from the glove to a computer. To our knowledge, this is the first report on low cost data glove based on paper pressure sensors. This low cost implementation of both sensors and communication network as proposed in this paper should pave the way toward a widespread implementation of data glove for real-time hand tracking applications.
人机界面(HCI)的当前趋势带来了一波能够追踪我们手部动作的新型消费设备。这些设备实现了与计算机应用更自然的交互界面。数据手套通常用作输入设备,配备有检测手部动作的传感器以及将这些动作与计算机连接的通信单元。不幸的是,传感器技术的高成本不可避免地给大多数普通用户带来了一些负担。在本研究中,我们提出了一种基于印刷聚合物传感器的低成本数据手套概念,以制造由消费型喷墨打印机制作的压力和弯曲传感器。这些传感器是通过将导电聚合物(聚(3,4 - 乙撑二氧噻吩):聚(苯乙烯磺酸盐)[PEDOT:PSS])薄膜印刷在光泽相纸上实现的。通过向PEDOT:PSS的水分散体中添加二甲基亚砜(DMSO),可以提高这些传感器的性能。表面电阻的概念成功地应用于传感器的设计和制造。为了展示印刷传感器,我们使用此类传感器构建了一个数据手套,并开发了用于实时手部追踪的软件。基于低成本Zigbee技术的无线网络被用于将数据从手套传输到计算机。据我们所知,这是关于基于纸质压力传感器的低成本数据手套的首次报告。本文所提出的传感器和通信网络的这种低成本实现方式应为数据手套在实时手部追踪应用中的广泛应用铺平道路。