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ON DEFINITION OF TASK ORIENTED SYSTEM INTELLIGENCE

机译:关于任务导向系统智能的定义

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With development of system complexity and performances, it is important to evaluate its ability to perform tasks, especially in the case of opposing outer effects. This amounts to affect "intelligence" coefficient to the system, which basically requires to transfer usual geometric space calculations to more global and qualitative task space, the only one where this coefficient can have a meaning irrespective of system structure. The problem is discussed here by defining the useful information by its analytical expression explicit in terms of system elements. By application to the class of deformable Lagrangian systems, adapted controlled structure is constructed. Intelligence measured by minimization of a distance between demand and result mainly appears as a compromise between information ball and robustness ball reduction for fixed system complexity.
机译:随着系统复杂性和表演的发展,重要的是评估其执行任务的能力,特别是在对抗外部效果的情况下。这增加了对系统的“智能”系数,这基本上需要将通常的几何空间计算转移到更全局和定性的任务空间,而这种系数可以具有意义而与系统结构无关。这里通过在系统元素方面通过其分析表达式定义有用信息来讨论问题。通过应用于可变形拉格朗日系统的类,构造了适应的受控结构。通过最小化需求和结果之间的距离测量的智能主要表现为信息球与固定系统复杂性的鲁棒性球之间的折衷。

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