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Ant system for reliability optimization of a series system with multiple-choice and budget constraints

机译:用于选择和预算约束的串联系统可靠性优化的蚂蚁系统

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Many researchers have shown that insect colonies behavior can be seen as a natural model of collective problem solving. The analogy between the way ants look for food and combinatorial optimization problems has given rise to a new computational paradigm, which is called ant system. This paper presents an application of ant system in a reliability optimization problem for a series system with multiple-choice constraints incorporated at each subsystem, to maximize the system reliability subject to the system budget. The problem is formulated as a nonlinear binary integer programming problem and characterized as an NP-hard problem. This problem is solved by developing and demonstrating a problem-specific ant system algorithm. In this algorithm, solutions of the reliability optimization problem are repeatedly constructed by considering the trace factor and the desirability factor. A local search is used to improve the quality of the solutions obtained by each ant. A penalty factor is introduced to deal with the budget constraint. Simulations have shown that the proposed ant system is efficient with respect to the quality of solutions and the computing time.
机译:许多研究人员表明,昆虫群落的行为可以看作是解决集体问题的自然模型。蚂蚁寻找食物的方式与组合优化问题之间的类比,产生了一种新的计算范式,称为蚂蚁系统。本文提出了蚂蚁系统在每个子系统具有多项选择约束的串联系统的可靠性优化问题中的应用,以在系统预算范围内最大化系统可靠性。该问题被表述为非线性二进制整数规划问题,并被描述为NP-hard问题。通过开发和演示特定于问题的蚂蚁系统算法可以解决此问题。在该算法中,考虑跟踪因素和期望因素,反复构造了可靠性优化问题的解决方案。使用本地搜索来提高每个蚂蚁获得的解决方案的质量。引入惩罚因子以应对预算约束。仿真表明,所提出的蚂蚁系统在解决方案质量和计算时间方面是有效的。

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