Chien Chi-Sheng, Huang Tung-Yung, Liao Tze-Yuan, Kuo Tsung-Yuan, Lee Tzer-Min
Department of Orthopedics, Chimei Foundation Hospital, and Department of Electrical Engineering, Southern Taiwan University of Science and Technology, Tainan, Taiwan;
J Rehabil Res Dev. 2014;51(9):1411-25. doi: 10.1682/JRRD.2013.11.0250.
Wheelchairs are an essential assistive device for many individuals with injury or disability. Manual wheelchairs provide a relatively low-cost solution to the mobility needs of such individuals. Furthermore, they provide an effective means of improving the user's cardiopulmonary function and upper-limb muscle strength. However, manual wheelchairs have a loss gross mechanical efficiency, and thus the risk of user fatigue and upper-limb injury is increased. Electric-powered wheelchairs reduce the risk of injury and provide a more convenient means of transportation. However, they have a large physical size and are relatively expensive. Accordingly, the present study utilizes a quality function deployment method to develop a wheelchair with a user-selectable manual/electric propulsion mode and an auxiliary solar power supply system. The auxiliary solar power supply increased the travel range of the wheelchair by approximately 26% compared with that of a wheelchair powered by battery alone. Moreover, the wheelchair has a modular design and can be disassembled and folded for ease of transportation or storage. Overall, the present results suggest that the proposed wheelchair provides an effective and convenient means of meeting the mobility needs of individuals with mobility difficulties.
轮椅对于许多受伤或残疾人士来说是一种必不可少的辅助设备。手动轮椅为这类人群的行动需求提供了一种成本相对较低的解决方案。此外,它们还提供了一种改善使用者心肺功能和上肢肌肉力量的有效方法。然而,手动轮椅的总机械效率较低,因此使用者疲劳和上肢受伤的风险增加。电动轮椅降低了受伤风险,并提供了一种更便捷的出行方式。然而,它们体积较大且相对昂贵。因此,本研究采用质量功能展开方法,开发了一种具有用户可选择的手动/电动推进模式和辅助太阳能供电系统的轮椅。与仅由电池供电的轮椅相比,辅助太阳能供电使轮椅的行驶里程增加了约26%。此外,该轮椅采用模块化设计,可以拆卸和折叠,便于运输或存放。总体而言,目前的结果表明,所提出的轮椅为满足行动不便人士的行动需求提供了一种有效且便捷的方式。