Application of Automated Pavement Inspection Technology in Provincial Highway Pavement Maintenance Decision-Making

Author:

Huang Li-Ling1ORCID,Lin Jyh-Dong1,Huang Wei-Hsing1ORCID,Kuo Chun-Hung1ORCID,Huang Mao-Yuan1

Affiliation:

1. Engineering Materials Division, Department of Civil Engineering, College of Engineering, National Central University, No. 300, Zhongda Rd, Zhongli District, Taoyuan City 320, Taiwan

Abstract

Taiwan’s provincial highways span approximately 5000 km and are crucial for connecting cities and towns. As pavement deteriorates over time and maintenance funds are limited, efficient pavement inspection and maintenance decision-making are challenging. Traditional inspections rely on manual visual assessments, consuming significant human resources and time without providing quantitative results. This study addresses current maintenance practices by introducing automated pavement damage detection technology to replace manual surveys. This technology significantly improves inspection efficiency and reduces costs. For example, traditional methods inspect 1 km per day, while automated survey vehicles cover 4 km per day, increasing efficiency fourfold. Additionally, automated surveys reduce inspection costs per kilometer by about 1.7 times, lowering long-term operational costs. Inspection results include the crack rate, rut depth, and roughness (IRI). Using K-means clustering analysis, maintenance thresholds for these indicators are established for decision-making. This method is applied to real cases and validated against actual maintenance decisions, showing that the introduced detection technology efficiently and objectively guides maintenance decisions and meets the needs of maintenance units. Finally, the inspection results are integrated into a pavement management platform, allowing direct maintenance decision-making and significantly enhancing management efficiency.

Publisher

MDPI AG

Reference18 articles.

1. Keegan, K., and Jung, K. (2015, January 18–21). Innovative Approach to Airfield Pavement Inspections and Distress Identification at OAK. Proceedings of the 9th International Conference on Managing Pavement Assets, Washington, DC, USA.

2. Oliveira, J.R.M., Silva, C.R.C., and Pereira, P.A.A. (July, January 29). Validation of an Indirect Method for Road Pavement Surveys. Proceedings of the 8th International Conference on the Bearing Capacity of Roads, Railways and Airfields, Champaign, IL, USA.

3. Directorate General of Highways, MOTC (2019). Handbook of Highway Maintenance.

4. AASHTO (1993). Guide for Design of Pavement Structures, American Association of State Highway and Transportation Officials.

5. Simpson, A.L., Rada, G.R., Visintine, B.A., and Groeger, J.L. (2016). Interstate Pavement Condition Sampling: Final Report, Federal Highway Administration. Publication No. FHWA-HIF-17-022.

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