Nonlinear Dynamics and Control in an Automotive Brake System

Shun-Chang Chang, Jui-Feng Hu
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引用次数: 2

Abstract

Brake squeal is a manifestation of friction-induced self-excited instability in disc brake systems. This study investigated non-smooth bifurcations and chaotic dynamics in disc brake systems and elucidated a chaotic control system. Decreasing squeal noise which is dependent on chaos, increases passengers comfort; consequently, suppressing chaos is crucial. First, synchronization was used to estimate the largest Lyapunov exponent to identify periodic and chaotic motions. Next, complex nonlinear behaviors were thoroughly observed for a range of parameter values in the bifurcation diagram. Rich dynamics of the disc brake system were studied using a bifurcation diagram, phase portraits, a Poincare map, frequency spectra, and Lyapunov exponents. Finally, the proposed technique was applied to a chaotic disc brake system through the addition of an external input that is a dither signal. Simulation results demonstrated the feasibility of the proposed approach.
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汽车制动系统的非线性动力学与控制
制动尖叫是盘式制动系统中摩擦引起的自激不稳定性的一种表现。研究了盘式制动系统的非光滑分岔和混沌动力学,给出了一种混沌控制系统。减少依赖于混乱的尖叫噪音,提高乘客舒适度;因此,抑制混乱是至关重要的。首先,利用同步估计最大Lyapunov指数来识别周期运动和混沌运动。其次,深入观察了分岔图中一系列参数值的复杂非线性行为。利用分岔图、相位肖像、庞加莱图、频谱和李亚普诺夫指数研究了盘式制动系统的丰富动力学。最后,将所提出的技术应用于混沌盘式制动系统,通过增加一个外部输入,即一个抖动信号。仿真结果验证了该方法的可行性。
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