An autonomous system for maintenance scheduling data-rich complex infrastructure: Fusing the railways' condition, planning and cost

被引:38
|
作者
Durazo-Cardenas, Isidro [1 ]
Starr, Andrew [1 ]
Turner, Christopher J. [1 ,2 ]
Tiwari, Ashutosh [1 ,3 ]
Kirkwood, Leigh [1 ]
Bevilacqua, Maurizio [1 ]
Tsourdos, Antonios [1 ]
Shehab, Essam [1 ]
Baguley, Paul [1 ]
Xu, Yuchun [1 ,4 ]
Emmanouilidis, Christos [1 ]
机构
[1] Cranfield Univ, Cranfield MK43 0AL, Beds, England
[2] Univ Surrey, Rik Medlik Bldg, Guildford GU2 7XH, Surrey, England
[3] Univ Sheffield, Portobello St, Sheffield S1 3JD, S Yorkshire, England
[4] Aston Univ, Birmingham B4 7ET, W Midlands, England
基金
英国工程与自然科学研究理事会;
关键词
Data-driven asset management of rail infrastructure; Systems integration; Condition-based maintenance; Intelligent maintenance; Data fusion; Cost engineering; Planning and scheduling; Systems design and implementation; TRACK MAINTENANCE; INTEGRATED MAINTENANCE; SUCCESS;
D O I
10.1016/j.trc.2018.02.010
中图分类号
U [交通运输];
学科分类号
08 ; 0823 ;
摘要
National railways are typically large and complex systems. Their network infrastructure usually includes extended track sections, bridges, stations and other supporting assets. In recent years, railways have also become a data-rich environment. Railway infrastructure assets have a very long life, but inherently degrade. Interventions are necessary but they can cause lateness, damage and hazards. Every day, thousands of discrete maintenance jobs are scheduled according to time and urgency. Service disruption has a direct economic impact. Planning for maintenance can be complex, expensive and uncertain. Autonomous scheduling of maintenance jobs is essential. The design strategy of a novel integrated system for automatic job scheduling is presented; from concept formulation to the examination of the data to information transitional level interface, and at the decision making level. The underlying architecture configures high-level fusion of technical and business drivers; scheduling optimized intervention plans that factor-in cost impact and added value. A proof of concept demonstrator was developed to validate the system principle and to test algorithm functionality. It employs a dashboard for visualization of the system response and to present key information. Real track incident and inspection datasets were analyzed to raise degradation alarms that initiate the automatic scheduling of maintenance tasks. Optimum scheduling was realized through data analytics and job sequencing heuristic and genetic algorithms, taking into account specific cost & value inputs from comprehensive task cost modelling. Formal face validation was conducted with railway infrastructure specialists and stakeholders. The demonstrator structure was found fit for purpose with logical component relationships, offering further scope for research and commercial exploitation.
引用
收藏
页码:234 / 253
页数:20
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