首页> 外文会议>ASME/BATH Symposium on Fluid Power and Motion Control >PREDICTIVE ROBUST CONTROL BASED ON HIGHER-ORDER SLIDING MODE FOR PASSIVE HEAVE COMPENSATOR WITH HYDRAULIC TRANSFORMER
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PREDICTIVE ROBUST CONTROL BASED ON HIGHER-ORDER SLIDING MODE FOR PASSIVE HEAVE COMPENSATOR WITH HYDRAULIC TRANSFORMER

机译:基于液压变压器无源升降补偿器的高阶滑动模式的预测鲁棒控制

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Passive heave compensation (PHC) system is widely applied in offshore equipment because of its superiority in energy conserving and reliability. However, it has poor adaptability to changing sea conditions and the compensation accuracy is low. Hydraulic transformer (HT), working as a pressure-flow control element, can potentially solve the problems mentioned above. In this paper, an HT based PHC (HTPHC) system is proposed for the first time, and a compensation algorithm based on higher-order sliding mode (HOSM) together with a prediction algorithm for the heave motion of the vessel is derived to get good compensation effect using the new PHC system. The prediction algorithm is proved to be effective according to the measured data of sea trials, and reduces the difficulty of designing and parameter tuning process compared with the existing ones. The effectiveness of the proposed control algorithm is evaluated with simulation, moreover, the effectiveness can still be maintained under changing sea conditions which is also verified by simulation.
机译:由于其能量节约和可靠性优势,被动升降补偿(PHC)系统广泛应用于海上设备。然而,它对改变海洋状况的适应性差,补偿精度低。液压变压器(HT)作为压力流量控制元件,可以解决上述问题。本文首次提出了一种基于HT基的PHC(HTPHC)系统,以及基于高阶滑动模式(HOSM)的补偿算法与船舶的升降运动的预测算法一起获得良好使用新PHC系统的补偿效果。证明预测算法根据海检的测量数据有效,并降低了与现有的数据相比设计和参数调谐过程的难度。通过仿真评估了所提出的控制算法的有效性,此外,仍然可以在改变海部条件下维持有效性,这些情况也通过模拟验证。

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