1. Svetlov VI. Technical solutions for the mechanics of passenger cars. Methods of justification. Moscow: Globus; 2002.

2. Sun W, Zhou J, Gong D, You T. Analysis of modal frequency optimization of railway vehicle car body. Advances in Mechanical Engineering. 2016;8(4):1-12.

3. Ashurkova SN, Vysotsky AM. Substantiation of the finite element model for the study of the stress-strain state of the passenger car body. Collection of Proceedings of the IV All-Russian Scientific and Technical Conference of Graduate Students, Masters and Young Scientists with International Participation, 2016: Young Scientists - Accelerating Scientific and Technological Progress in the XXI century. Izhevsk: INNOVA; 2016. p.880 - 885.

4. Vysotsky AM, Kobishchanov VV, Antipin DYa, Rasin DYu. The choice of a rational design of a two-layer lining of passenger car side walls. Bulletin of Bryansk State Technical University. 2014;4(44):8-11.

5. Vysotsky AM, Kobishchanov VV, Antipin DYa. Substantiation of the method for modeling the two-layer lining of the side walls of passenger car bodies when analyzing their loading. Bulletin of Bryansk State Technical University. 2013;3(39):10-13.

6. Biryukov IV, Savoskin AN, Burchak GP. Mechanical part of traction rolling stock. Moscow: Transport; 1992.

7. Carlbom P. Carbody and passengers in rail vehicle dynamics [doctoral thesis]. Stockholm; 2000.

8. Pogorelov DYu. Algorithms for modeling the dynamics of systems of bodies with a large number of degrees of freedom. Vestnik of Lobachevsky University of Nizhni Novgorod. 2011;4(2):278-279.