Analyzing Road Coverage of Public Vehicles According to Number and Time Period for Installation of Road Inspection Systems

Author:

Kashiyama Takehiro,Sekimoto Yoshihide,Seto ToshikazuORCID,Lwin Ko KoORCID

Abstract

Shortages of engineers and financial resources have made it difficult for municipalities to identify and address problems with aging road infrastructures. To resolve these problems, numerous studies have focused on automating road inspection, including a study in which we developed a smartphone-based road inspection system. For efficient operation of the system, it is necessary to understand the usage of vehicles in which the system will be installed. In this study, we analyzed the usage of public vehicles with long-term global positioning system (GPS) probe data collected from public vehicles operating in Kakogawa city and Fujisawa city in Japan. As a result, we discovered that local governments of the same size have similar tendencies in terms of road coverage. Moreover, we found that installing road inspection systems on only a few public vehicles can cover the entire road inspection area. We anticipate that these results will assist local governments in making informed decisions during the system introduction process and provide an indicator of the accuracy required for road inspection systems to future researchers.

Funder

National Institute of Information and Communications Technology

Publisher

MDPI AG

Subject

Earth and Planetary Sciences (miscellaneous),Computers in Earth Sciences,Geography, Planning and Development

Reference31 articles.

1. White Paper on Present State and Future of Social Capital Aginghttp://www.mlit.go.jp/common/001216008.pdf

2. AN EFFECTIVE SURFACE INSPECTION METHOD OF URBAN ROADS ACCORDING TO THE PAVEMENT MANAGEMENT SITUATION OF LOCAL GOVERNMENTS

3. Bridging the Gap–Restoring and Rebuilding the Nation’s Bridges,2008

4. FixMyStreethttps://www.fixmystreet.com/

5. SeeClickFixhttps://seeclickfix.com/

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