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38 M.S. MERDİVENCİ, A.G. AVCI, B. BARLAS

                     [7] Shah, Y.U., Jain, S.S., Parida, M. Evaluation of prioritization methods for effective
                     pavement maintenance of urban roads, International Journal of Pavement Engineering, 2014,
                     15(3): 238-250.
                     [8] Erdogan, G., Alexander, L., Rajamani, R.. Adaptive Vibration Cancellation for Tire-Road
                     Friction Coefficient Estimation on Winter Maintenance Vehicles, IEEE Transactions On
                     Control Systems Technology, 2010, 18(5): 1023-1032.
                     [9] Nila, A., Vanlanduit, S., Vepa, S., Van Paepegem, W. A PIV-based method for estimating
                     slamming loads during water entry of rigid bodies, Measurement Science And Technology,
                     2013, 24(4).
                     [10] Wines, C. Stability and Safety Issues for High Speed Operation of Rigid Inflatable Boats,
                     11th International Conference on Fast Sea Transportation, Hawaii, 2011, 844-849.
                     [11] Wertheim, A.H., Bos, J.E., Bles, W. Contributions of roll and pitch to sea sickness, Brain
                     Research Bulletin, 1998, 47(5): 517-524.
                     [12] Turner, M., Griffin, M.J. Motion sickness in public road transport: passenger behaviour and
                     susceptibility, Ergonomics, 1999, 42(3): 444-461.
                     [13] Diaz, J.M., Dormido, S., Aranda, J. Interactive computer-aided control design using
                     quantitative feedback theory: the problem of vertical movement stabilization on a high-speed
                     ferry, International Journal of Control, 2005, 78(11): 813-825.
                     [14] Kim, M.S., Kim, K.W., Yoo, W.S. Method To Objectively Evaluate Subjective Ratings Of
                     Ride Comfort, International Journal of Automotive Technology, 2011, 12(6): 831-837.
                     [15] Ahn, S.J. Discomfort Of Vertical Whole-Body Shock-Type Vibration In The Frequency
                     Range Of 0.5 To 16 Hz, International Journal of Automotive Technology, 2010, 11(6): 909-916.
                     [16] Zhao, X., Schindler, C. Evaluation of whole-body vibration exposure experienced by
                     operators of a compact wheel loader according to ISO 2631-1:1997 and ISO 2631-5:2004,
                     International Journal of Industrial Ergonomics, 2014, 44(6): 840-850.
                     [17] Turkay, S., Akcay, H. A study of random vibration characteristics of the quarter-car model,
                     Journal of Sound and Vibration, 2005, 282(1-2): 111-124.
                     [18] Misol, M., Algermissen, S., Monner, H.P. Experimental investigation of different active
                     noise control concepts applied to a passenger car equipped with an active windshield, Journal of
                     Sound and Vibration, 2012, 331(10): 2209-2219.

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