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An optimization approach for team coordination through information sharing

机译:信息共享团队协调的优化方法

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Team coordination and information sharing are important in concurrent engineering (CE), where multiple design teams execute their tasks simultaneously and then share information to update their designs, e.g., through integrated tests. The process then iterates until the global design objective is optimized. When properly controlled and executed, CE can be an effective method to speed up the design process for complex and large-scale projects thanks to its parallel nature. Recently, a coordinate optimization framework is proposed in [1] to model and control the information sharing in CE. It can be shown that under a convexity assumption, CE converges to a globally optimal design. In this paper, we study how the coordinate optimization framework can be applied to CE in a general environment where the objective function is non-convex. We propose a simulation optimization method using a domain space cutting and optimal computing budget allocation to efficiently select the initial points from which the coordinate optimization can be applied under a mild local convexity condition. The proposed approach has broad potentials in decentralized control and optimization of complex and large-scale systems in automation. Numerical experiments show that the optimal selection of the initial points allow coordination optimization to efficiently find the global optimum.
机译:团队协调和信息共享在并发工程(CE)中很重要,其中多个设计团队同时执行其任务,然后共享信息以更新其设计,例如通过集成测试。然后,该过程迭代,直到全局设计目标被优化。当正确控制和执行时,由于其并行性质,CE可以是加快复杂和大规模项目的设计过程的有效方法。最近,在[1]中提出了一种坐标优化框架来模拟并控制CE中的信息共享。可以表明,在凸起假设下,CE会聚到全局最佳设计。在本文中,我们研究了坐标优化框架如何在客观函数是非凸的一般环境中应用于CE的CE。我们提出了一种使用域空间切割和最佳计算预算分配的模拟优化方法,以有效地选择可以在温和局部凸起条件下应用坐标优化的初始点。拟议的方法在自动化中的分散控制和复杂和大型系统的优化具有广泛的潜力。数值实验表明,初始点的最佳选择允许协调优化,以有效地找到全局最佳。

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