Design and Controlling of Low-Cost Prosthetic Hand Using Force Sensor

S. F. Ahmed, M. H. Tanveer, Isho James Kiwarkis, Herish Badal Basy
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Abstract

Birth defects or several tragic events can result in the loss of a hand that can be physically and emotionally incredibly difficult to bear. In the study, a low-cost, prosthetic hand has been developed and managed, irrespective of geographical and financial conditions. It would be feasible and affordable to many people to create a prosthetic hand with basic materials, available in most areas and powered by servomotors, based on muscle motion detected by the use of Resistive Force Sensor (RFS). Due to its simplicity and low cost, the Arduino controller is used as a main control unit for the operation of this prosthesic. It is shown that throughout the experimental work it has been figured out that a developed low-cost prosthetic hand is working well and affordable. The findings of experiments indicate that the success rate for choosing big and light weight items is about 78%. But because of the simple lightweight materials used in constructing it, it cannot withstand large and small items very well.
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基于力传感器的低成本假手设计与控制
出生缺陷或一些悲剧性事件可能导致失去一只手,这在身体和情感上都是难以忍受的。在这项研究中,已经开发和管理了一种低成本的假手,而不考虑地理和财务条件。对于许多人来说,使用基本材料制造假手是可行且负担得起的,在大多数地区都可以使用,并由伺服马达驱动,基于使用电阻力传感器(RFS)检测到的肌肉运动。由于其简单和低成本,Arduino控制器被用作该假肢操作的主要控制单元。结果表明,在整个实验过程中,已经发现开发的低成本假手工作良好且价格合理。实验结果表明,选择大而轻的物品的成功率约为78%。但是由于建造时使用了简单的轻质材料,它不能很好地承受大小物品。
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