The Efficient and Tentative Model for Extenics Replications of the Moveable Robots

K. S. Sakyi, Jian-Fei Lu
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Abstract

On the most elementary level, you and I (human beings) were created with five main mechanisms (or parts): • A body which is termed as the main structure of the human being. • A sensory system that takes certain information around the body and the immediate environment. • A muscle system to aid the body move easily. • A control base to trigger the muscles and sensors. • A brain system that develops sensory data and tells the muscles what to do in other words the way forward. Obviously, we likewise have some imperceptible qualities, for example, intellect and ethics, among others but on an absolute corporeal level. Robots, on the other hand, can be created with five main mechanisms or more. This research aims at implementing robots in some tedious jobs that as supposed to be executed by human beings in various factories and industries. This study also presents the practical and tentative model for Extenics replications of the moveable mechanical device (robot) useful on VIPRO stage. Momentary antiquity and indication of the pertinent hypothetical ideas are provided. The intelligent boundary for drawn-out switch uses a novel element for synthetic intelligence which is drawn-out control (Extenics) to expand DHFPC switch rapid enactment of mobile robots. Applying Extenics specific methods and application in vague interplanetary result in a novel, advanced application for the VIPRO stage which can be used to feign and device innovative switch approaches of moveable robots.
可移动机器人可拓复制的有效试探性模型
在最基本的层面上,你和我(人类)是由五个主要机制(或部分)创造的:•一个身体,被称为人类的主要结构。•一种感知系统,可以获取身体周围和周围环境的某些信息。•肌肉系统,帮助身体轻松移动。•用于触发肌肉和传感器的控制基座。•开发感觉数据并告诉肌肉该做什么的大脑系统,换句话说,就是前进的方向。显然,我们同样也有一些难以察觉的品质,例如智力和道德等等,但都是在绝对的物质层面上。另一方面,机器人可以由五种或更多的主要机构组成。这项研究的目的是在一些繁琐的工作中实现机器人,这些工作本来应该由人类在各种工厂和行业中执行。本研究还提出了可移动机械装置(机器人)在VIPRO舞台上的可伸缩复制的实用和试探性模型。提供了短暂的古代和有关的假设思想的指示。延长开关的智能边界采用延长控制(Extenics)这一新颖的合成智能元素,扩展了DHFPC开关在移动机器人中的快速实现。可拓学的具体方法及其在模糊行星际中的应用为VIPRO阶段提供了一种新颖、先进的应用,可用于设计和实现可移动机器人的创新开关方法。
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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