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FREQUENCY SHAPED SEMI-ACTIVE CONTROL FOR MAGNETORHEOLOGICAL FLUID-BASED VIBRATION CONTROL SYSTEMS

机译:基于磁流变流体的振动控制系统的频率形状半主动控制

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Novel semi-active vibration controllers are developed in this study for magnetorheological (MR) fluid-based vibration control systems, including: (1) a band-pass frequency shaped semi-active control algorithm, (2) a narrow-band frequency shaped semi-active control algorithm. These semi-active vibration control algorithms designed without resorting to the implementation of an active vibration control algorithms upon which is superposed the energy dissipation constraint. These new Frequency Shaped Semi-active Control (FSSC) algorithms require neither an accurate damper (or actuator) model, nor system identification of damper model parameters for determining control current input. In the design procedure for the FSSC algorithms, the semi-active MR damper is not treated as an active force producing actuator, but rather is treated in the design process as a semi-active dissipative device. The control signal from the FSSC algorithms is a control current, and not a control force as is typically done for active controllers. In this study, two FSSC algorithms are formulated and performance of each is assessed via simulation. Performance of the FSSC vibration controllers is evaluated using a single-degree-of-freedom (DOF) MR fluid-based engine mount system. To better understand the control characteristics and advantages of the two FSSC algorithms, the vibration mitigation performance of a semi-active skyhook control algorithm, which is the classical semi-active controller used in base excitation problems, is compared to the two FSSC algorithms.
机译:本研究针对磁流变(MR)流体振动控制系统开发了新型半主动振动控制器,其中包括:(1)带通频率成形的半主动控制算法,(2)窄带频率成形的半主动控制算法-主动控制算法。这些半主动振动控制算法在设计时不求助于主动振动控制算法的实现,在其上叠加了能量耗散约束。这些新的频率成形半主动控制(FSSC)算法既不需要精确的阻尼器(或执行器)模型,也不需要系统识别阻尼器模型参数来确定控制电流输入。在FSSC算法的设计过程中,半主动MR阻尼器不被视为产生主动力的致动器,而是在设计过程中被视为半主动耗散装置。来自FSSC算法的控制信号是控制电流,而不是通常对有源控制器所做的控制力。在这项研究中,制定了两种FSSC算法,并通过仿真评估了每种算法的性能。使用基于单自由度(DOF)MR流体的发动机支架系统评估FSSC振动控制器的性能。为了更好地了解这两种FSSC算法的控制特性和优点,将半主动式天钩控制算法(这是用于基础励磁问题的经典半主动控制器)的减振性能与这两种FSSC算法进行了比较。

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