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Modeling and Simulation of Active-Controlled Heave Compensation System of Deep-sea Mining based on Dynamic Vibration Absorber

机译:基于动态振动吸收器的深海挖掘主动控制升温系统的建模与仿真

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The heave compensation system is of great importance to the safety and operation efficiency of the deep-sea mining system subject to irregular-wave excitation. A novel active-controlled heave compensation system based on dynamic vibration absorber for the deep-sea mining system was proposed in this paper. The three-degree-of-freedom dynamic models of active heave compensation system based on dynamic vibration absorber in sinusoidal wave are established. An optimal controller was designed for the proposed system by using Linear-quadratic optimization technique. The performance of the active heave compensation system based on dynamic vibration absorber was computed and analyzed. It is indicated that the heave compensator based on dynamic vibrator absorber with the optimal controller can have the best performance of heave compensation and it is practical to isolate the lift pipe and its support platform from the significant vibration of the ship motion induced by the sinusoidal wave.
机译:升降补偿系统对深海采矿系统的安全性和运营效率非常重视,受到不规则波激励的深海挖掘系统。本文提出了一种基于用于深海采矿系统动态振动吸收器的新型主动控制的升降补偿系统。建立了基于正弦波动态振动吸收器的三维自由度动态模型。通过使用线性二次优化技术为所提出的系统设计了最佳控制器。基于动态振动吸收器的主动升降补偿系统的性能进行了计算和分析。结果表明,基于动态振动器吸收器的升降补偿器具有最佳控制器的最佳性能,可以具有升降补偿的最佳性能,并且可以从正弦波引起的船舶运动的显着振动隔离升降管和其支持平台实际。

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