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Nonlinear Predictive Control Applied to Steam/Water Loop in Large Scale Ships

机译:非线性预测控制在大型船舶蒸汽/水回路中的应用

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In steam/water loop for large scale ships, there are mainly five sub-loops posing different dynamics in the complete process. When optimization is involved, it is necessary to select different prediction horizons for each loop. In this work, the effect of prediction horizon for Multiple-Input Multiple-Output (MIMO) system is studied. Firstly, Nonlinear Extended Prediction Self-Adaptive Controller (NEPSAC) is designed for the steam/water loop system. Secondly, different prediction horizons are simulated within the NEPSAC algorithm. Based on simulation results, we conclude that specific tuning of prediction horizons based on loop’s dynamic outperforms the case when a trade-off is made and a single valued prediction horizon is used for all the loops.
机译:在大型船舶的蒸汽/水回路中,主要有五个子回路在整个过程中具有不同的动力。当涉及优化时,有必要为每个循环选择不同的预测范围。在这项工作中,研究了预测水平对多输入多输出(MIMO)系统的影响。首先,针对蒸汽/水回路系统设计了非线性扩展预测自适应控制器(NEPSAC)。其次,在NEPSAC算法中模拟了不同的预测范围。根据仿真结果,我们得出结论,基于权衡的动态性对预测范围进行特定调整的效果优于进行权衡并针对所有环路使用单一值的预测范围时的情况。

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