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Control and command systems concepts from early work on a Mars Rover

机译:火星漫游者早期工作中的控制和命令系统概念

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摘要

We recover and develop some robotic systems concepts (on the light of present systems tools) that were originated for an intended Mars Rover in the sixties of the last century at the Instrumentation Laboratory of MIT, where one of the authors was involved. The basic concepts came from the specifications for a type of generalized robot inspired in the structure of the vertebrate nervous systems, where the decision system was based in the structure and function of the Reticular Formation (RF). The vertebrate RF is supposed to commit the whole organism to one among various modes of behavior, so taking the decisions about the present overall task. That is, it is a kind of control and command system. In this concepts updating, the basic idea is that the RF comprises a set of computing units such that each computing module receives information only from a reduced part of the overall, little processed sensory inputs. Each computing unit is capable of both general diagnostics about overall input situations and of specialized diagnostics according to the values of a concrete subset of the input lines. Slave systems to this command and control computer, there are the sensors, the representations of external environment, structures for modeling and planning and finally, the effectors acting in the external world.
机译:我们(根据当前的系统工具)恢复并开发了一些机器人系统概念,这些概念起源于上世纪六十年代在麻省理工学院的仪器实验室的火星探测器,其中一位作者参与其中。基本概念来自一种受脊椎动物脊椎动物神经系统结构启发的通用机器人的规格,该决策系统基于网状结构(RF)的结构和功能。脊椎动物RF应该使整个生物体处于各种行为模式中的一种,因此要对当前的总体任务做出决定。也就是说,它是一种控制和命令系统。在此概念更新中,基本思想是RF包括一组计算单元,以使每个计算模块仅从总体的,很少处理的感觉输入的一部分中接收信息。每个计算单元都能够进行有关总体输入情况的常规诊断,并能够根据输入线的具体子集的值进行专门的诊断。从该命令和控制计算机的从系统,包括传感器,外部环境的表示形式,用于建模和规划的结构,最后是作用于外部世界的效应器。

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