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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Improvements of magnetic suspension active vibration isolation for floating raft system
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Improvements of magnetic suspension active vibration isolation for floating raft system

机译:浮动筏系统磁悬浮有源振动隔离的改进

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A floating raft system is a special double-layer isolation system aiming to reduce the level of noise and vibration and has been widely applied to many kinds of ships and submarines. It can isolate vibration of hosts and auxiliary machines and reduce the structural noise of ships and submarines effectively. It can also protect the equipments and instruments in ships and submarines from being damaged, and makes them to be operated properly when ships and submarines are subjected to external loads and sudden shocks. However, the floating raft system is generally a flexible structure and it is subject to multiple frequency disturbances. The design of control systems to enhance its isolation performance is an active area of research. This paper presents improvements achieved by using a dynamic step FXLMS controller whose main benefit is to balance convergence speed and steady-state error by making the convergence coefficient vary with time. The mathematical model of the dynamic system to be used in the controller is obtained by the observer/Kalman filter identification (OKID) method. The performance of the new solution (dynamic step size FXLMS with OKID model) is compared with previous work based on a fuzzy controller and a dynamic model identified via the prediction error method. Both simulated and experimental results confirm the validity and the benefits of the approach.
机译:浮动筏系统是一种特殊的双层隔离系统,旨在减少噪音和振动水平,并已广泛应用于多种船舶和潜艇。它可以隔离主机和辅助机器的振动,从而有效地降低船舶和潜艇的结构噪声。它还可以保护船舶和潜艇的设备和仪器免受损坏,并在船舶和潜艇受到外部负荷和突然冲击时正确操作它们。然而,浮动筏系统通常是柔性结构,并且它受到多次频率干扰。控制系统的设计,以提高其隔离性能是一个活跃的研究领域。本文通过使用动态步骤FXLMS控制器提供了通过使收敛系数随时间而平衡收敛速度和稳态误差的动态步骤FXLMS控制器来实现的改进。通过观察者/卡尔曼滤波器标识(OKID)方法获得要在控制器中使用的动态系统的数学模型。基于模糊控制器的先前的工作和通过预测误差方法识别的动态模型将新解决方案(带有OkID模型的动态步长FXLMS的性能进行比较。模拟和实验结果都证实了方法的有效性和益处。

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