Anderegg, R. and Kaufmann, L. (2004). “Intelligent compaction with vibratory rollers.”
Transportation Research Record, Republic of Washington, D.C., Vol. 1, No. 1868, pp.
124-134.
Chang, G., Xu, Q., Rutledge, J., Horan, B., Michael, L., White, D. and Vennapusa,
P. (2011). “Accelerated implementation of intelligent compaction technology for embankment
subgrade soils, aggregate base, and asphalt pavement materials-final report.” FHWA-IF-12-002,
Transtec Group, Austin.
Kim, J. H. and Park, G. B. (2010). “Development of intelligent compaction control
system.” Proc. of KSCE 2010 Conf, pp. 2196-2199 (in Korean).
Kim, S. G. (2014). “Development of an intelligent compaction system for an automated
earthwork.” Proc. of KSCE 2014 Conf, pp. 1539-1540 (in Korean).
Lee, J. S. (2015). “Status of intelligent compaction applied to asphalt pavement construction.”
Journal of the Korean Society of Road Engineers, Vol. 17, No. 2, pp. 67-69 (in Korean).
Lee, S. M. (2018). Development of intelligent compaction system for efficient quality
control of roller. Master’s Thesis, Hanyang University, Republic of Korea, p. 60 (in
Korean).
Lee, S. M., Lee, S. S., Yu, S. H. and Seo, J. W. (2017). “A study on the management
of the roller's quality for compaction works.” Journal of the Korean Society of Civil
Engineers, Vol. 37, No. 3, pp. 621-627 (in Korean).
Lee, S. S., Park, S. I. and Seo, J. W. (2018). “Utilization analysis methodology for
fleet telematics of heavy earthwork equipment.” Automation in Construction, Vol. 92,
pp. 59-67.
10.1016/j.autcon.2018.02.035
Mooney, M. A. and Rinehart, R. V. (2007). “Field monitoring of roller vibration during
compaction of subgrade soil.” Journal of Geotechnical and Geoenvironmental Engineering,
Vol. 133, No. 3, pp. 257-265.
10.1061/(ASCE)1090-0241(2007)133:3(257)
Mooney, M. A., Rinehart, R. V., Facas, N. W. and Musumbi, O. M. (2010). “National
cooperative highway research program report 676.” Transportation Research Board of
The National Academies.
Park, K. B. and Kim, J. H. (2012). “Application of the new degree of compaction evaluation
method.” Journal of the Korean Geotechnical Society, Vol. 28, No. 2, pp. 5-14 (in
Korean).
10.7843/kgs.2012.28.2.5