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An integrated data collection and analysis framework for remote monitoring and planning of construction operations

机译:集成的数据收集和分析框架,用于远程监控和规划施工作业

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Recent advances in data collection and operations analysis techniques have facilitated the process of designing, analyzing, planning, and controlling of engineering processes. Mathematical tools such as graphical models, scheduling techniques, operations research, and simulation have enabled engineers to create models that represent activities, resources, and the environment under which a project is taking place. Traditionally, most simulation paradigms use static or historical data to create computer interpret-able representations of real engineering systems. The suitability of this approach for modeling construction operations, however, has always been a challenge since most construction projects are unique in nature as every project is different in design, specifications, methods, and standards. Due to the dynamic nature and complexity of most construction operations, there is a significant need for a methodology that combines the capabilities of traditional modeling of engineering systems and real time field data collection. This paper presents the requirements and applicability of a data-driven modeling framework capable of collecting and manipulating real time field data from construction equipment, creating dynamic 3D visualizations of ongoing engineering activities, and updating the contents of a discrete event simulation model representing the real engineering system. The developed framework can be adopted for use by project decision-makers for short-term project planning and control since the resulting simulation and visualization are completely based on the latest status of project entities.
机译:数据收集和操作分析技术的最新进展促进了工程过程的设计,分析,计划和控制过程。图形工具,调度技术,运筹学和仿真等数学工具使工程师能够创建代表活动,资源和项目进行环境的模型。传统上,大多数模拟范例使用静态或历史数据来创建真实工程系统的计算机可解释表示。然而,由于大多数建设项目在本质上都是独特的,因为每个项目的设计,规格,方法和标准都不同,因此这种方法对施工作业建模的适用性一直是一个挑战。由于大多数施工作业的动态性质和复杂性,因此迫切需要一种结合了工程系统的传统建模功能和实时现场数据收集功能的方法。本文提出了一种数据驱动建模框架的要求和适用性,该模型能够从建筑设备中收集和处理实时现场数据,创建正在进行的工程活动的动态3D可视化,并更新代表真实工程的离散事件仿真模型的内容系统。由于最终的模拟和可视化完全基于项目实体的最新状态,因此开发的框架可以供项目决策者用于短期项目计划和控制。

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