Extended Kalman Filter in 2S1 Tracked Vehicle System with Hybrid Control

Article Preview

Abstract:

The essence of the undertaken topic is the problem of estimation of state vector in the model of 2S1 tracked vehicle suspension system through the use of Extended Kalman Filter. The use of non-linear filter has become necessary due to the magnetorheological damper located at suspension system, which has been described by hyperbolic model. Application of the damper caused the tested suspension system has become a semi-active structure in which the hybrid control was applied. The choice of this type of control stems from the fact that in the case of tracked combat vehicles in addition to the advantageous conditions of work of vehicle crew also cornering stability and the possibility of sudden acceleration or braking is important. The hybrid control allows to determine a compromise between ride comfort and stability of 2S1 platform.

You might also be interested in these eBooks

Info:

Periodical:

Solid State Phenomena (Volume 248)

Pages:

69-76

Citation:

Online since:

March 2016

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2016 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] P, Borkowski, J. Wysocki, Z. Hryciów, B. Michałowski, Badania modelowe czołgu lekkiego na bazie wielozadaniowej platformy bojowej, Szybkobieżne Pojazdy Gąsienicowe 2 (2011) 39-46.

Google Scholar

[2] A. Jurkiewicz A, T. Nabagło, Układ pół aktywnego zawieszenia platformy gąsienicowej 2S1 zastosowany w celu poprawy stabilności nadwozia pojazdu, Kraków, Wybrane zagadnienia układów redukcji drgań i hałasu Polska. Monografie Katedry Automatyzacji Procesów AGH w Krakowie (2014).

Google Scholar

[3] A. Jurkiewicz, T. Nabagło, J. Kowal, M. Apostoł, A new suspension system of an autonomous caterpillar platform. Journal of Theoretical and Applied Mechanics 52(4) (2014) 857-867.

DOI: 10.15632/jtam-pl.52.4.857

Google Scholar

[4] J. Łuczko, U. Ferdek, Porównanie różnych strategii sterowania w semiaktywnych układach zawieszenia samochodu, Czasopismo Techniczne. Mechanika R. 109, z, 6-M (2012) 81-92.

Google Scholar

[5] Y. Liu, T.P. Waters, M.J. Brennan, A comparison of semi-active damping control strategies for vibration isolation of harmonic disturbances, Journal of Sound and Vibration 280(1) (2005) 21-39.

DOI: 10.1016/j.jsv.2003.11.048

Google Scholar

[6] J. Snamina, J. Kowal, P. Orkisz, Active Suspension Based on Low Dynamic Stiffnes, Acta Physica Polonica. Acoustic and biomedical engineering 123(6) (2013) 1118-1122.

DOI: 10.12693/aphyspola.123.1118

Google Scholar

[7] M. Siebielak, J. Konieczny, J. Kowal, Optimal Control of Slow-Active Vehicle Suspension – Results of Experimental Data, Journal of Low Frequency Noise, Vibration and Active Control 32(1) (2013) 99-116.

DOI: 10.1260/0263-0923.32.1-2.99

Google Scholar

[8] O. Lindgärde, Kalman filtering in semi-active suspension control, in: Proc. of 15th IFAC World Congress, 2002, pp.1539-1544.

DOI: 10.3182/20020721-6-es-1901.01541

Google Scholar

[9] Julier, S. J., & Uhlmann, J. K. (1997, July). New extension of the Kalman filter to nonlinear systems, in: AeroSense'97. International Society for Optics and Photonics, 1997, pp.182-193.

Google Scholar

[10] S. J. Julier, K. U. Jeffrey, Unscented filtering and nonlinear estimation, Proceedings Of The IEEE 92(3) (2004), 401-422.

DOI: 10.1109/jproc.2003.823141

Google Scholar

[11] S. Guo, S. Yang, C. Pan, Dynamic modeling of magnetorheological damper behaviors, Journal of Intelligent material systems and structures 17(1) (2006) 3-14.

DOI: 10.1177/1045389x06055860

Google Scholar

[12] S. Velupillai , L. Guvenc, S. Oncu, D. Ozcan, Vehicle Chassis Control Using Adaptive Semi-Active Suspension, in: World Congress. 17(1) 2008, pp.4677-4682.

DOI: 10.3182/20080706-5-kr-1001.00787

Google Scholar

[13] D. Karnopp, M.J. Crosby, R.A. Harwood, Vibration control using semi-active force generators, Journal of Engineering for Industry 96(2) (1974) 619-626.

DOI: 10.1115/1.3438373

Google Scholar

[14] M. Valášek, M. Novak, Z. Šika, O. Vaculin, Extended ground-hook-new concept of semi-active control of truck's suspension. Vehicle system dynamics 27(5-6) (1997) 289-303.

DOI: 10.1080/00423119708969333

Google Scholar