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Holonic Execution System for Construction Management

机译:施工管理的全部执行系统

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摘要

Ensuring high efficiency in construction through advanced planning techniques must be supported by the simulation of construction processes. In previous research, the potential for multi-agent based simulation to support the planning phase were successfully shown with regard to some typical construction tasks. Among the main benefits determined by this approach the following ones were reported: capability of simulating real-world processes and interaction among resources; powerful 3D visualization; optimal sizing of resources. However, those models are not easy to create, because of the absence of built-in blocks and the many relationships among single agents and between agents and context. In this paper we propose the application of a novel holonic system for construction management, which is a sub-category of multi-agent systems. It combines the high and predictable performance promised by hierarchical systems with the robustness against disturbances and the agility of heterarchical systems. Holons are self-contained, stable, intermediate forms, that can be used to create a bigger whole. By using holons, designers aim to create complex systems that can be reused and redesigned much more rapidly than standard multi-agent systems. The approach was applied to the optimal scheduling of bored piles construction. Hence, a holonic construction execution system for bored piles tasks was developed. The holonic architecture was designed so as to integrate the DMAS pattern for scheduling optimization through stigmergy. The results of this paper showed the easy reusability of our simulation sub-systems and the potentials in terms of automatic optimal planning of construction works.
机译:通过先进的规划技术确保建设的高效率必须得到施工过程的模拟。在以前的研究中,在一些典型的施工任务方面成功地显示了基于多智能体的模拟的潜力以支持规划阶段。通过这种方法决定的主要福利,据报道:模拟现实世界流程和资源之间互动的能力;强大的3D可视化;资源的最佳规模。然而,由于没有内置块和单个代理之间的许多关系以及代理和上下文,那些模型并不容易创建。在本文中,我们提出了一种在施工管理中采用新型Holonic系统,这是多助理系统的子类别。它结合了分层系统所承诺的高和可预测性能,其具有鲁棒性的稳健性和杂交系统的敏捷性。 Holons是独立的,稳定,中间形式,可用于创造更大的整体。通过使用Holons,设计人员旨在创建复杂的系统,这些系统可以比标准的多代理系统更快地重复使用并重新设计。该方法应用于钻孔桩施工的最佳调度。因此,开发了一种无聊的桩桩任务的定性施工执行系统。定期架构被设计成集成DMA模式以通过恶性解释进行调度优化。本文的结果表明,我们的模拟子系统的可重复可重用性以及施工工程自动最佳规划方面的潜力。

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