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Research Article | Open Access

Primary resonance suppression in spur gear systems using hybrid proportional and fractional-order derivative displacement feedback control

Zhongyang Su1Zhoujin Cui2( )Hanlin Huang2
Jiangsu Maritime Institute, Nanjing, 211170, China
School of Mathematical Sciences, Jiangsu Second Normal University, Nanjing, 210013, China
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Abstract

This paper investigated primary resonance suppression in nonlinear spur gear systems using a hybrid proportional and fractional-order derivative displacement feedback (P-FDDF) controller. The dynamic model of the system was established through a second-order non-autonomous differential equation incorporating time-varying meshing stiffness, backlash, and external excitations. The amplitude-frequency response equation of primary resonance was derived via the multiple scale method, while Lyapunov stability theory was employed to analyze the stability of steady-state solutions. Numerical analyses examined the effects of meshing damping, load fluctuations, meshing stiffness variations, and control parameters on resonance characteristics. Time history responses and phase diagrams demonstrated that the P-FDDF strategy achieves simultaneous resonant amplitude suppression and frequency tuning. The fractional-order component's frequency-weighting and memory properties enhance adaptability to complex nonlinear dynamics induced by time-varying meshing stiffness and backlash, establishing the P-FDDF as a reliable solution for gear system vibration control.

CLC number: 34A08, 70K42, 93C95

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AIMS Mathematics
Pages 1857-1877

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Cite this article:
Su Z, Cui Z, Huang H. Primary resonance suppression in spur gear systems using hybrid proportional and fractional-order derivative displacement feedback control. AIMS Mathematics, 2026, 11(1): 1857-1877. https://doi.org/10.3934/math.2026077

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Received: 08 November 2025
Revised: 28 December 2025
Accepted: 14 January 2026
Published: 20 January 2026
©2026 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)