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A Two-Phase Support Method for Solving Linear Programs: Numerical Experiments

机译:求解线性程序的两阶段支持方法:数值实验

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We develop a single artificial variable technique to initialize the primal support method for solving linear programs with bounded variables. We first recall the full artificial basis technique, then we will present the proposed algorithm. In order to study the performances of the suggested algorithm, an implementation under the MATLAB programming language has been developed. Finally, we carry out an experimental study about CPU time and iterations number on a large set of the NETLIB test problems. These test problems are practical linear programs modelling various real-life problems arising from several fields such as oil refinery, audit staff scheduling, airline scheduling, industrial production and allocation, image restoration, multisector economic planning, and data fitting. It has been shown that our approach is competitive with our implementation of the primal simplex method and the primal simplex algorithm implemented in the known open-source LP solver LP_SOLVE.
机译:我们开发了一种单一的人工变量技术来初始化用于求解带界变量线性程序的基本支持方法。我们首先回顾完整的人工基础技术,然后介绍提出的算法。为了研究所提出算法的性能,已经开发了一种在MATLAB编程语言下的实现。最后,我们对大量NETLIB测试问题进行了有关CPU时间和迭代次数的实验研究。这些测试问题是实用的线性程序,它们模拟了来自多个领域的各种现实问题,这些领域包括炼油厂,审计人员日程安排,航空公司日程安排,工业生产和分配,图像恢复,多部门经济计划以及数据拟合。已经表明,我们的方法与我们在原始开源LP解算器LP_SOLVE中实现的原始单纯形方法和原始单纯形算法的实现相比具有竞争力。

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