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Self-adaptability and man-in-the-loop: a dilemma in autonomic computing systems

机译:自适应性和半人半解:自主计算系统中的难题

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This paper addresses some controversial issues relating to two main questions. Firstly, we discuss 'man-in-the loop' issues in SAACS. Some people advocate this must always be so that man's decisions can override autonomic components. In this case, the system has two subsystems - man and machine. Can we, however, have a fully autonomic machine - with no man in sight; even for short periods of time? What kinds of systems require man to always be in the loop? What is the optimum balance in self-to-human control? How do we determine the optimum? How far can we go in describing self-behaviour? How does a SAACS system handle unexpected behaviour? Secondly, what are the challenges/obstacles in testing SAACS in the context of self/human dilemma? Are there any lesson to be learned from other programmes e.g. Star-wars, aviation and space explorations? What role human factors and behavioural models play whilst in interacting with SAACS?.
机译:本文讨论了与两个主要问题有关的一些有争议的问题。首先,我们讨论SAACS中的“循环中的人”问题。有人主张必须始终这样,以使人的决定可以凌驾于自主的组成部分上。在这种情况下,系统具有两个子系统-人和机器。但是,我们能拥有一台全自动的机器吗?即使是短时间?什么样的系统要求人始终处于循环状态?自我控制中的最佳平衡是什么?我们如何确定最佳?我们在描述自我行为方面能走多远? SAACS系统如何处理意外行为?其次,在自我/人类困境的背景下测试SAACS的挑战/障碍是什么?是否有其他课程可供学习,例如星球大战,航空航天探索?在与SAACS交互时,人为因素和行为模型扮演什么角色?

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