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Algebraic solution of tropical optimization problems via matrix sparsification with application to scheduling

机译:矩阵稀疏化的热带优化问题代数求解及其在调度中的应用

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Optimization problems are considered in the framework of tropical algebra to minimize and maximize a nonlinear objective function defined on vectors over an idempotent semifield, and calculated using multiplicative conjugate transposition. To find the minimum of the function, we first obtain a partial solution, which explicitly represents a subset of solution vectors. We characterize all solutions by a system of simultaneous equation and inequality, and show that the solution set is closed under vector addition and scalar multiplication. A matrix sparsification technique is proposed to extend the partial solution, and then to obtain a complete solution described as a family of subsets. We offer a backtracking procedure that generates all members of the family, and derive an explicit representation for the complete solution. As another result, we deduce a complete solution of the maximization problem, given in a compact vector form by the use of sparsified matrices. The results obtained are illustrated with illuminating examples and graphical representations. We apply the results to solve real-world problems drawn from project (machine) scheduling, and give numerical examples. (C) 2017 Elsevier Inc. All rights reserved.
机译:在热带代数的框架中考虑了优化问题,以最小化和最大化在幂等半场上的矢量上定义的非线性目标函数,并使用乘法共轭换位来计算。为了找到函数的最小值,我们首先获得一个局部解,该局部解显式表示了解向量的子集。我们用联立方程和不等式系统对所有解进行了刻画,并证明了在向量加法和标量乘法下解集是封闭的。提出了矩阵稀疏化技术来扩展部分解,然后获得描述为子集族的完整解。我们提供了回溯过程,该过程可生成该家族的所有成员,并为完整解决方案派生出明确的表示形式。另一个结果是,我们推导了最大化问题的完整解决方案,该问题通过使用稀疏矩阵以紧凑向量形式给出。所获得的结果将通过示例性说明和图形表示形式进行说明。我们将结果应用于解决从项目(机器)调度中得出的现实问题,并给出数值示例。 (C)2017 Elsevier Inc.保留所有权利。

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