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Bilevel and multi-objective dynamic construction site layout and security planning

机译:双层多目标动态施工现场布置与安全规划

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The joint problem of dynamic construction site layout and security planning is fundamental to any construction project. However, it is still largely unexplored. Few research studies investigated the implementation of security measures during the construction phase. This paper proposes a bilevel multi-objective model for the dynamic construction site layout and security planning problem. Specifically, the upper-level programming denotes that the project manager must first choose the construction site layout and security strategies to minimize the layout costs and consequences of a potential attack. The lower-level programming denotes that the attacker will destroy a subset of the facilities to inflict the maximum economic consequence on the construction facilities system. Thereafter, a bilevel multi-objective Particle Swarm Optimization Algorithm (MOBLPSO) is designed to solve this model. Finally, the approach is carried out in the Xiajiang hydropower large-scale construction project to illustrate the effectiveness of the proposed model and algorithm. (C) 2015 Elsevier B.V. All rights reserved.
机译:动态施工现场布局和安全计划的共同问题对于任何建设项目都是至关重要的。但是,它仍然很大程度上未被开发。很少有研究调查施工阶段安全措施的实施情况。针对动态施工现场布置和安全规划问题,提出了一种双层多目标模型。具体来说,高层编程表示项目经理必须首先选择施工现场的布局和安全策略,以最大程度地降低布局成本和潜在攻击的后果。较低级别的编程表示攻击者将销毁一部分设施,从而对建筑设施系统造成最大的经济后果。此后,设计了一种双层多目标粒子群优化算法(MOBLPSO)来解决该模型。最后,在下江水电大型建设项目中采用了该方法,以说明所提出的模型和算法的有效性。 (C)2015 Elsevier B.V.保留所有权利。

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