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Methods and Applications of (max,+) linear Algebra

机译:(max,+)线性代数的方法和应用

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Exotic semirings such as the "(max+) semiring" (R union {-infinity}, max,+), ir the "tropical semiring" (N union {+infinity}, min,+), have been invented and reinvented many times since the late fifties, in relation with various fields: performance evaluation of manufacturing systems and discrete event system theory; graph theory (path algebra) and Markov decision processes, Hamilton-Jacobi theory; asymptotic analysis (low temperature asymptotics in statistical physics, large deviations, WKB method); language theory (automata with multiplicities). Despite this apparent profusion, there is a small set of common, non-naive, basic results and problems, in general not known outside the (max,+) community, which seem to be useful in most applications. The aim of this short survey paper is to present what we believe to be the minimal core of (max,+) results, and to illustrate these results by typical applications, at the frontier of language theory, control, and operations research (performance evaluation of discrete event systems, analysis of Markov decision processes with average cost.) Basic techniques include: solving all kingds of systems of linear equations, sometimes with exotic symmetrization and determinant techniques; using the (max,+) Perron-Frobenius theory to study the dynamics of (max,+) linear maps. We point out some open problems and current developments.
机译:诸如“(max +)半环”(R union {-infinity},max,+)或“热带半环”(N union {+ infinity},min,+)等奇特的半环已经被发明了许多次从五十年代末开始,涉及各个领域:制造系统的性能评估和离散事件系统理论;图论(路径代数)和马尔可夫决策过程,汉密尔顿-雅各比理论;渐近分析(统计物理学中的低温渐近,大偏差,WKB方法);语言理论(具有多重性的自动机)。尽管有这种明显的充斥,但仍然存在一小部分常见的,非幼稚的基本结果和问题,通常在(max,+)社区之外是未知的,这似乎在大多数应用程序中很有用。这份简短的调查论文的目的是介绍我们认为是(max,+)结果的最小核心的内容,并通过语言理论,控制和运筹学(性能评估)前沿的典型应用来说明这些结果。基本技术包括:解决所有线性方程组的问题,有时使用奇特的对称化和行列式技术;使用(max,+)Perron-Frobenius理论研究(max,+)线性图的动力学。我们指出了一些未解决的问题和当前的发展。

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