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首页> 外文期刊>Journal of Construction Engineering and Management >Hybrid Genetic Algorithm and Constraint-Based Simulation Framework for Building Construction Project Planning and Control
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Hybrid Genetic Algorithm and Constraint-Based Simulation Framework for Building Construction Project Planning and Control

机译:基于混合遗传算法和基于约束的构建施工项目规划和控制的仿真框架

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In the construction sector, the absence of a framework to incorporate and synchronize the resources required for activities means that projects risk incurring cost and time overruns. In this study, a framework was generated and tested to optimize resource allocation. The framework considers financial constraints through a genetic algorithm process and constraint-based simulation. The simulation method was developed based on the critical path method relation-defining system, with a dynamic prioritizing system automatically creating the simulation network. By introducing a standard cost database to the data management section of the framework, the total work required to insert data manually is minimized. For the majority of the activities, the user simply chooses an activity and determines its relationships with other activities. The rest of the initial required data are automatically pulled from the imported databases. The validity of the developed framework was demonstrated through a case study on constructing the structure of a residential building in Tehran, including four structural systems. The four systems were compared regarding time and cost of execution to illustrate the relevance of the framework. The framework decreases the user's manual work while producing outputs of time, cost, and resources that are compatible with building information modeling (BIM) software. Overall, the result is an enhanced quality of project management plans. Moreover, the framework can be used as a planning tool at the preconstruction stage or as a control tool during the construction phase. The proposed approach provides a realistic project management plan, with the potential for substantial savings in finances and resources. (C) 2020 American Society of Civil Engineers.
机译:在建设部门,缺乏框架来融入和同步活动所需的资源意味着项目风险导致成本和时间超支。在本研究中,生成并测试了一个框架以优化资源分配。该框架通过遗传算法过程和基于约束的仿真来考虑财务限制。基于关键路径方法关系定义系统开发了仿真方法,具有动态优先级系统,自动创建模拟网络。通过向框架的数据管理部分引入标准成本数据库,手动插入数据所需的总工作被最小化。对于大多数活动来说,用户只需选择活动并确定其与其他活动的关系。其余的初始必填数据从导入的数据库中自动拔出。通过构建德黑兰住宅建筑结构的案例研究证明了发达框架的有效性,包括四个结构系统。在执行时间和成本上比较了四个系统,以说明框架的相关性。该框架在产生与构建信息建模(BIM)软件兼容的时间,成本和资源的输出时减少了用户的手动工作。总的来说,结果是增强的项目管理计划质量。此外,该框架可以用作预设阶段的规划工具或在施工阶段期间作为控制工具。拟议的方法提供了一个现实的项目管理计划,潜力可以储蓄财务和资源。 (c)2020年美国土木工程师协会。

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