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Tensor-Centric Warfare Ⅱ: Entropic Uncertainty Modeling

机译:张于张力的战争Ⅱ:熵不确定性建模

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In the first paper of the tensor-centric warfare (TCW) series [1], we proposed a tensor model of combat generalizing earlier Lanchester-type systems with a particular emphasis on contemporary military thinking, including the distributed C4ISR system (Command, Control, Communications, Computing, Intelligence, Surveillance and Reconnaissance). In the present paper, we extend this initial tensor combat model with entropic Lie-derivative machinery in order to capture some aspects of this deep uncertainty, while, in the process, formalizing into our model military notion of symmetry and asymmetry in warfare as a commutator, also known as a Lie bracket. In doing so, we have sought to shift the question from the prediction of outcomes of combat, upon which previous combat models such as the Lanchester-type equations have been typically constructed, towards determining the uncertainty outcomes, using a rigorous analytical basis.
机译:在张量的战争(TCW)系列[1]的第一篇文章中,我们提出了一种特殊地强调当代军事思想的浪潮概括的张力模型,包括分布式C4ISR系统(命令,控制,通信,计算,智力,监控和侦察)。在本文中,我们用熵谎言机械扩展了这一初始张力作战模型,以捕捉这种深度不确定性的某些方面,而在此过程中,正式地形成了我们的模型对称性和不对称的战争作为换向器的军事概念,也称为谎言括号。在这样做时,我们已经试图从战斗结果预测中转换问题,在该问题中,在兰斯特型方程中的先前战斗模型通常使用严格的分析基础来确定不确定性结果。

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