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首页> 外文期刊>Annals of Operations Research >An Exact Solution Method for Reliability Optimization in Complex Systems
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An Exact Solution Method for Reliability Optimization in Complex Systems

机译:复杂系统可靠性优化的精确解法

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摘要

Systems reliability plays an important role in systems design, operation and management. Systems reliability can be improved by adding redundant components or increasing the reliability levels of subsystems. Determination of the optimal amount of redundancy and reliability levels among various subsystems under limited resource constraints leads to a mixed-integer nonlinear programming problem. The continuous relaxation of this problem in a complex system is a nonconvex nonseparable optimization problem with certain monotone properties. In this paper, we propose a convexification method to solve this class of continuous relaxation problems. Combined with a branch-and-bound method, our solution scheme provides an efficient way to find an exact optimal solution to integer reliability optimization in complex systems.
机译:系统可靠性在系统设计,操作和管理中起着重要作用。可以通过添加冗余组件或提高子系统的可靠性级别来提高系统可靠性。在有限的资源约束下确定各个子系统之间的冗余和可靠性级别的最佳数量会导致混合整数非线性规划问题。这个问题在复杂系统中的连续松弛是具有某些单调性质的非凸不可分的优化问题。在本文中,我们提出了一种凸化方法来解决这类连续松弛问题。结合分支定界法,我们的解决方案提供了一种有效的方法,可以为复杂系统中的整数可靠性优化找到精确的最佳解决方案。

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