计算实例结果表明,采用磁流变阻尼器对结构进行半主动控制能有效地减小结构的地震反应。
The results of an example indicate that the MR damper using semi-active control algorithm can efficiently reduce the structural responses induced by earthquakes.
采用磁流变阻尼器半主动控制理论和方法,建立座椅可控磁流变阻尼非线性控制系统的数学模型。
Using magneto-rheological damper, semi-active control theory and method, mathematical model of a controllable magneto-rheological damping and nonlinear control system is established for seats.
与被动悬挂相比,采用磁流变阻尼器的机车横向半主动悬挂系统可显著降低悬挂质量的加速度值。
Compared to the passive system, the acceleration of the sprung mass, and suspension travel is significantly reduced for the system with a controlled MR damper.
基于模糊理论控制采用磁流变阻尼器(MRFD)对海洋平台在随机波浪力作用下的振动控制效果进行研究。
A magneto rheological fluid damper (MRFD) is adopted to control the vibration of offshore platform under random wave loads and its control effect is studied.
仿真结果表明采用磁流变阻尼器半主动座椅悬架能较好的抑制座椅垂直方向上的振’动,并提高了座椅的舒适性。
The simulation results indicate that the semi-active seat suspension is better than passive seat suspension in restraining the vertical vibration of body and enhancing the comfort of the seat.
仿真结果表明,结合合适的控制算法,采用磁流变阻尼器的半主动悬架系统有效地改善了汽车驾驶平顺性和乘坐舒适性。
The results show that with a proper control algorithm, the semi-active suspension with MR damper can effectively improve the ride comfort of vehicles.
采用有限元ansys软件,分析了相同活塞有效长度下的单线圈与双线圈结构磁流变阻尼器的磁场分布情况。
The magnetic distribution of the single-coil and dual-coil magnetic rheological dampers with the same effective piston length was analyzed by using the finite element ANSYS software.
采用BP神经网络,建立了磁流变阻尼器的正向模型和逆向模型。
A forward model and an inverse model of a MR damper were established by using BP neural network.
本文通过对结构的分析,采用模糊控制策略结合半主动控制算法控制磁流变阻尼器的作用力输出。
It establish the object model and control rule with analysis of structure, adopt the fuzzy control strategy combine the semi-active control calculate the output of MR.
本文通过对结构的分析,采用模糊控制策略结合半主动控制算法控制磁流变阻尼器的作用力输出。
It establish the object model and control rule with analysis of structure, adopt the fuzzy control strategy combine the semi-active control calculate the output of MR.
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