Design and development of a five-fingered master-slave robotic hand by using solenoid and pressure sensors comparator technology solenoid actuation system

S. Bahrin, K. Sahari
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引用次数: 3

Abstract

Robotics technology, especially in the robotic hand development, is very important to perform various tasks that are considered too risky or fatal to be performed by a human being. This technology is also important to assist human being physiological rehabilitation. There are numerous designs of robotic hand, but the five-fingered robotic hand design is the most dexterous robotic hand design due to its similar appearance with a human hand. In general, the fingers' motions are driven or actuated by geared motors or other types of emerging technologies and controlled by microcontrollers or computers that received instructions from sensors or user inputs. However, the motions are yet to be driven or actuated by solenoids and controlled by using pressure sensor comparator method due to the solenoid technology limited applications and the controller novelty approach. Nevertheless, solenoids are known for their fast reaction time and strong holding force that are useful to perform high speed motions and strong grasping actions. The controller novelty approach is also expected to provide good motions' accuracy and response. Therefore, the synergy of this idea can introduce a new master-slave robotic hand design called SPCT (Solenoid-Pressure-Comparator-Technology) Robotic Hand. For this particular paper, the focus will be on the slave component design and solenoid actuation system. It can be seen that the design has potential for further developments.
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设计并开发了一种采用电磁阀和压力传感器比较器技术的五指主从机械手电磁驱动系统
机器人技术,特别是在机械人手的发展中,对于执行各种被认为危险或致命而无法由人类完成的任务非常重要。这项技术对辅助人类的生理康复也很重要。机械手的设计有很多,但五指机械手设计是最灵巧的机械手设计,因为它的外观与人手相似。一般来说,手指的运动是由减速电机或其他类型的新兴技术驱动或驱动的,并由接收传感器或用户输入指令的微控制器或计算机控制。然而,由于螺线管技术的应用有限和控制器的新颖性,运动尚未由螺线管驱动或驱动,并使用压力传感器比较器方法控制。然而,螺线管以其快速的反应时间和强大的保持力而闻名,这对于执行高速运动和强大的抓取动作是有用的。控制器新颖性方法也有望提供良好的运动精度和响应。因此,这种思想的协同作用可以引入一种新的主从机械手设计,称为SPCT(电磁压力比较器技术)机械手。在本文中,重点将放在辅助元件的设计和电磁致动系统上。可以看出,该设计具有进一步发展的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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