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A Two-Stage Vibration Isolation System Featuring an Electrorheological Damper via the Semi-Active Static Output Feedback Variable Structure Control Method

机译:具有半主动静态输出反馈变结构控制方法的电流变阻尼器的两阶段隔振系统

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In this paper, we present a semi-active static output feedback variable structure control (VSC) strategy for vibration isolation. The control concept is based on the fact that, for a practical vibration isolation system subject to external disturbances, all state variables are hard to measure on-line and variations of system parameters frequently exist. A bypass electrorheological (ER) damper is designed and manufactured by incorporating a Bingham model of ER fluids. After the voltage-dependent damping characteristics of the ER damper are evaluated, the dynamic model of a two-stage vibration isolation system with one ER damper is derived. Using only the measured information from sensors installed at strategic locations, continuous output feedback VSC controllers are presented, which do not have possible chattering effects. The continuous control law is decoupled from external disturbances by combining controller design under a meeting sliding mode reachable condition with the choice of sliding surface gradient parameters under a guarantee of the Routh-Hurwitz stability of reduced-order sliding mode dynamics. The saturation of the actuator is also incorporated into the controller, showing no adverse effect. The self-adaptability of the vibration isolation system with respect to external disturbances, the robustness of the control method with respect to parameter variations and the effectiveness of vibration isolation are demonstrated by numerical simulation results in the frequency and time domains. It is illustrated that the performance of the presented semi-active static output feedback VSC system is superior to those of optimally passive damping and maximum damping variety even if system parameter uncertainties exist.
机译:在本文中,我们提出了一种用于振动隔离的半主动静态输出反馈可变结构控制(VSC)策略。该控制概念基于这样一个事实,即对于一个受到外部干扰的实用的振动隔离系统,所有状态变量都很难在线测量,并且系统参数的变化经常存在。通过并入ER流体的Bingham模型来设计和制造旁路电流变(ER)阻尼器。在评估了ER阻尼器随电压变化的阻尼特性之后,得出了带有一个ER阻尼器的两级隔振系统的动力学模型。仅使用安装在关键位置的传感器的测量信息,就可以提供连续的输出反馈VSC控制器,该控制器不会产生颤振效果。通过在满足滑模可达到条件的情况下将控制器设计与滑面梯度参数的选择结合起来,从而在保证降序滑模动力学的Routh-Hurwitz稳定性的基础上,将连续控制律与外部干扰分离。致动器的饱和度也被并入控制器中,因此没有不利影响。通过在频域和时域的数值模拟结果证明了隔振系统对外界干扰的自适应性,控制方法对参数变化的鲁棒性以及隔振的有效性。结果表明,即使存在系统参数不确定性,所提出的半主动静态输出反馈VSC系统的性能也优于最优被动阻尼和最大阻尼变化。

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