Bekker, M. G. (1969). Introduction to terrain-vehicle systems. part i: The terrain. part ii: The vehicle. Michigan Univ Ann Arbor, Michigan. US.
Bernstein, R. (1913). Probleme zur experimentellen otorpflugmechanik. Der Motorwagen, 16(9), 199-206.
Brunskill, C., Patel, N., Gouache, T. P., Scott, G. P., Saaj, C. M., Matthews, M., & Cui, L. (2011). Characterisation of martian soil simulants for the ExoMars rover testbed. Journal of Terramechanics, 48(6), 419-438.
Ding, L., Gao, H., Deng, Z., Nagatani, K., & Yoshida, K. (2011). Experimental study and analysis on driving wheels’ performance for planetary exploration rovers moving in deformable soil. Journal of Terramechanics, 48(1), 27-45.
Edwards, M. B., Dewoolkar, M. M., Huston, D. R., & Creager, C. (2017). Bevameter testing on simulant Fillite for planetary rover mobility applications. Journal of Terramechanics, 70, 13-26.
Goriatchkin, B. P. (1936). Theory and development of agriculture machinery, Moscow. Russia.
Howari, F. M. (2003). The use of remote sensing data to extract information from agricultural land with emphasis on soil salinity. Soil Research, 41(7), 1243-1253.
Huang, H., Li, J., Chen, B., Wu, B., & Zou, M. (2016). Performance evaluation of a wire mesh wheel on deformable terrains. Journal of Terramechanics, 68, 9-22.
Mardani, A., Shahidi, K., & Karim-Maslak, H. (2010). An indoor traction measurement system to facilitate research on agricultural tires. Journal of Food, Agriculture and Environment, 8.
Mähönen, J., Lintzén, N., & Casselgren, J. (2021). Portable bevameter for measuring snow properties in field. Cold Regions Science and Technology, 182, 103195.
Massah, J., & Noorolahi, S. (2010). Design, development and performance evaluation of a tractor-mounted bevameter. Soil and Tillage Research, 110(1), 161-166.
Mason, G. L., Salmon, J. E., McLeod, S., Jayakumar, P., Cole, M. P., & Smith, W. (2020). An overview of methods to convert cone index to bevameter parameters. Journal of Terramechanics, 87, 1-9.
McKyes, E., & Fan, T. (1985). Multiplate penetration tests to determine soil stiffness moduli. Journal of terramechanics, 22(3), 157-162.
Rahnama, A., Habib Aghi, Q., and Qahramani, A. (2002). Introducing a new simple cutting test machine for unsaturated soils. Iranian Journal of Science and Technology-B, 27 (B-1). (In Farsi)
Taghavifar, H., & Mardani, A. (2018). Off-road Vehicle Dynamics: Analysis, Modelling and Optimization. Springer Publishing AG, publishing. Gewerbestr. Swizerland.
Van, N. N., Matsuo, T., Koumoto, T., & Inaba, S. (2008). Experimental device for measuring sandy soil sinkage parameters. Bulletin of the Faculty of Agriculture Saga University, Japan, 93(1), 91-99.
Yang, C., Yang, G., Liu, Z., Chen, H., & Zhao, Y. (2018). A method for deducing pressure–sinkage of tracked vehicle in rough terrain considering moisture and sinkage speed. Journal of Terramechanics, 79, 99-113.
Yu, T. (2007). The tractive performance of a Friction-Based Prototype track. Doctoral dissertation. University of Pretoria, Pretoria. South Africa.