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Evolution of Humanoid Robot and contribution of various countries in advancing the research and development of the platform

机译:人形机器人的演变以及各国在推动平台研发方面的贡献

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A human like autonomous robot which is capable to adapt itself with the changing of its environment and continue to reach its goal is considered as Humanoid Robot. These characteristics differs the Android from the other kind of robots. In recent years there has been much progress in the development of Humanoid and still there are a lot of scopes in this field. A number of research groups are interested in this area and trying to design and develop a various platforms of Humanoid based on mechanical and biological concept. Many researchers focus on the designing of lower torso to make the Robot navigating as like as a normal human being do. Designing the lower torso which includes west, hip, knee, ankle and toe, is the more complex and more challenging task. Upper torso design is another complex but interesting task that includes the design of arms and neck. Analysis of walking gait, optimal control of multiple motors or other actuators, controlling the Degree of Freedom (DOF), adaptability control and intelligence are also the challenging tasks to make a Humanoid to behave like a human. Basically research on this field combines a variety of disciplines which make it more thought-provoking area in Mechatronics Engineering. In this paper a various platforms for Humanoid Robot development are identified and described based on the evolutionary research on robotics. The paper also depicts a virtual map of humanoid platform development from the ancient time to present time. It is very important and effective to analyze the development phases of androids because of its Business, Educational and Research value. Basic comparisons between the different designs of Humanoid Structures are also analyzed in this paper.
机译:像人类一样的自主机器人能够适应环境的变化并不断实现其目标,因此被认为是类人机器人。这些特征使Android与其他类型的机器人有所不同。近年来,类人动物的开发取得了很大进展,但在该领域仍然有很多领域。许多研究小组对该领域感兴趣,并试图基于机械和生物学概念设计和开发各种类人猿平台。许多研究人员专注于下部躯干的设计,以使机器人像普通人一样进行导航。设计包括西方,臀部,膝盖,脚踝和脚趾在内的下部躯干是一项更复杂,更具挑战性的任务。上躯干设计是另一个复杂但有趣的任务,其中包括手臂和脖子的设计。对步态进行分析,对多个电机或其他执行器进行最佳控制,控制自由度(DOF),适应性控制和智能化,也是使类人机器人表现得像人一样具有挑战性的任务。该领域的基础研究结合了多种学科,使其在机电工程领域更具发人深省的领域。在本文中,基于对机器人技术的进化研究,确定并描述了各种用于类人机器人开发的平台。本文还描绘了从远古时代到现在的类人动物平台发展的虚拟地图。由于其商业,教育和研究价值,分析android的开发阶段非常重要且有效。本文还分析了类人动物结构的不同设计之间的基本比较。

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