One Dashboard to Rule Them All: Case Study of an Integrated Facility Management System

2016 ◽  
Vol 113 (5) ◽  
pp. 52-63
Author(s):  
Joy M. Ulickey
2021 ◽  
Vol 11 (12) ◽  
pp. 5721
Author(s):  
Abubakar Sharafat ◽  
Muhammad Shoaib Khan ◽  
Kamran Latif ◽  
Waqas Arshad Tanoli ◽  
Wonyoung Park ◽  
...  

Underground utilities are important assets that provide basic services for society’s daily life. They are generally very complex and remain unnoticed until they fail due to any particular reason. The stakeholders involved in the design, construction, and maintenance of utility infrastructure face many problems due to the traditional underground utility management system, resulting in injuries, loss of life, disruptions, project delays, and financial loss. The problem with the traditional system is that it uses 2D drawings and keeps unreliable information or a lack of updated information, which makes it an inefficient utility management system. With the advancement in construction information technology, we can address this effectively by integrating BIM and GIS. In this paper, a novel integrated BIM-GIS framework for underground utility management systems was developed on the basis of IFC to CityGML mapping. It provides an effective underground utility management system that facilitates designers in optimization of the design, assists in the excavator’s operator by providing real-time three-dimensional spatial information during the construction process, and acts as an as-built information database for utility facility management. For validation, a real-time project case study indicated that the proposed system can effectively provide comprehensive underground utility information at different project stages.


2014 ◽  
Vol 102 (2) ◽  
pp. 204-220 ◽  
Author(s):  
Lei Hou ◽  
Ying Wang ◽  
Xiangyu Wang ◽  
Nicoleta Maynard ◽  
Ian Cameron ◽  
...  

Author(s):  
Pallavi Dharwada ◽  
Joel S. Greenstein ◽  
Anand K. Gramopadhye ◽  
Steve J. Davis

Mathematics ◽  
2021 ◽  
Vol 9 (14) ◽  
pp. 1633
Author(s):  
Zhiwu Zhou ◽  
Julián Alcalá ◽  
Víctor Yepes

The aim of this paper is to establish an international framework for sustainable project management in engineering, to make up the lack of research in this field, and to propose a scientific theoretical basis for the establishment of a new project management system. The article adopts literature review, mathematical programming algorithm and case study as the research method. The literature review applied the visual clustering research method and analyzed the results of 21-year research in this field. As a result, the project management system was found to have defects and deficiencies. A mathematical model was established to analyze the composition and elements of the optimized international project management system. The case study research selected large bridges for analysis and verified the superiority and practicability of the theoretical system. Thus, the goal of sustainable development of bridges was achieved. The value of this re-search lies in establishing a comprehensive international project management system model; truly integrating sustainable development with project management; providing new research frames and management models to promote the sustainable development of the construction industry.


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