首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Motion analysis of a rotor supported by self-acting axial groove gas bearing system with double time delays
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Motion analysis of a rotor supported by self-acting axial groove gas bearing system with double time delays

机译:具有双时滞的自作用轴向槽气体轴承系统支撑的转子的运动分析

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摘要

A rotor system with double time delays supported by the high-speed self-acting gas-lubricated bearings with three-axial grooves is modeled to implement active delay control of the system. The differential transformation method is employed to solve the time-dependent compressible gas Reynolds equation due to its rapid convergence rate and minimal calculation error. Based on the precise integration method, a calculation method is proposed to analyze the dynamic responses of a gas bearing-rotor nonlinear system with time delays. The motion analysis of the self-acting gas-lubricated bearing-rotor system with double time delays is implemented by the orbit diagrams, the time series, and the phase diagrams. The influence of time delays and feedback control gains on the dynamic responses of the bearing-rotor nonlinear system is analyzed. The numerical results show that the amplitude of the responses of the system with time delays control is reduced, the motion is more stable and good control effect is achieved when the chosen feedback control gains match the time delays of the bearing-rotor system.
机译:对带有三轴槽的高速自作用气体润滑轴承支撑的具有双重时间延迟的转子系统进行建模,以实现系统的主动延迟控制。由于其快速收敛速度和最小的计算误差,因此采用微分变换方法来求解时间相关的可压缩气体雷诺方程。基于精确积分法,提出了一种计算方法,用于分析带有时滞的气体轴承-转子非线性系统的动力响应。带有双重时间延迟的自作用式气体润滑轴承-转子系统的运动分析是通过轨道图,时间序列和相图进行的。分析了时滞和反馈控制增益对轴承-转子非线性系统动力响应的影响。数值结果表明,当所选择的反馈控制增益与轴承-转子系统的时滞相匹配时,具有时滞控制的系统的响应幅度减小,运动更加稳定,并取得了良好的控制效果。

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