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Velocity observer design for a class of uncertain nonlinear mechanical systems: a self-adaptive fuzzy logic-based approach
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B. M. YILMAZ Et Al. , "Velocity observer design for a class of uncertain nonlinear mechanical systems: a self-adaptive fuzzy logic-based approach," International Journal of Systems Science , vol.56, no.3, pp.423-433, 2025

YILMAZ, B. M. Et Al. 2025. Velocity observer design for a class of uncertain nonlinear mechanical systems: a self-adaptive fuzzy logic-based approach. International Journal of Systems Science , vol.56, no.3 , 423-433.

YILMAZ, B. M., TATLICIOĞLU, E., & SELİM, E., (2025). Velocity observer design for a class of uncertain nonlinear mechanical systems: a self-adaptive fuzzy logic-based approach. International Journal of Systems Science , vol.56, no.3, 423-433.

YILMAZ, BAYRAM, ENVER TATLICIOĞLU, And ERMAN SELİM. "Velocity observer design for a class of uncertain nonlinear mechanical systems: a self-adaptive fuzzy logic-based approach," International Journal of Systems Science , vol.56, no.3, 423-433, 2025

YILMAZ, BAYRAM M. Et Al. "Velocity observer design for a class of uncertain nonlinear mechanical systems: a self-adaptive fuzzy logic-based approach." International Journal of Systems Science , vol.56, no.3, pp.423-433, 2025

YILMAZ, B. M. TATLICIOĞLU, E. And SELİM, E. (2025) . "Velocity observer design for a class of uncertain nonlinear mechanical systems: a self-adaptive fuzzy logic-based approach." International Journal of Systems Science , vol.56, no.3, pp.423-433.

@article{article, author={BAYRAM MELİH YILMAZ Et Al. }, title={Velocity observer design for a class of uncertain nonlinear mechanical systems: a self-adaptive fuzzy logic-based approach}, journal={International Journal of Systems Science}, year=2025, pages={423-433} }