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A simulation approach for a periodic PCR buffer allocation strategy in organizational program management

机译:组织程序管理中周期性PCR缓冲区分配策略的仿真方法

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In a dynamically changing environment, the manager of a maintenance and remodeling (M/R) program is confronted with an increasing complexity of coordinating and cooperating multi-resource constrained multiple projects. Uncertainty and interdependence are sources of the complexity, and cause an internal disruption of an activity and chain reactions of disturbance propagation that deteriorate the stability and manageability of the program. This paper evaluates previous endeavors to apply production control and management techniques to the construction industry, and investigates the possibility of applying other production concepts and theories to organizational program management. In particular, this paper proposes a buffer allocation strategy by which periodic buffers are allocated in the flows of program constraint resources (PCRs) to stabilize a master construction schedule instead of protecting individual activities. Comparative experiments by Monte Carlo simulations illustrate better performance of the proposed strategy in terms of program goals: productivity, flexibility, and long-term stability.
机译:在动态变化的环境中,维护和改造(M / R)程序的经理面临着协调和协作受多个资源约束的多个项目的日益复杂的问题。不确定性和相互依赖性是复杂性的根源,并且会导致活动的内部中断和干扰传播的连锁反应,从而破坏程序的稳定性和可管理性。本文评估了将生产控制和管理技术应用于建筑行业的先前努力,并研究了将其他生产概念和理论应用于组织计划管理的可能性。特别是,本文提出了一种缓冲区分配策略,该策略通过在程序约束资源(PCR)的流中分配定期缓冲区来稳定主建设进度,而不是保护单个活动。蒙特卡洛模拟的比较实验从程序目标:生产率,灵活性和长期稳定性方面说明了所提出策略的更好性能。

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