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Dynamic Positioning simulations of a Thrust Allocation Algorithm considering Hydrodynamic Interactions

机译:考虑水动力相互作用的推力分配算法的动态定位仿真

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The Dynamic Positioning (DP) System is responsible for the station keeping of vessels in several offshore operations. The forces required by the DP System are distributed among the available thrusters by a thrust allocation algorithm which should be accurate, efficient and robust. This means that the effective forces match the required forces while power consumption is minimized. To accurately generate the required forces, the physical limitations of the thrusters and the hydrodynamic interactions must be considered. The hydrodynamic interactions are consistently modelled to accommodate the following typical effects: thruster-hull, thruster-current and thruster-thruster interaction. The result of this modeling is a nonlinear optimization problem, which is solved using the Sequential Quadratic Programming (SQP) algorithm with slack variables. The DP simulation carried out show that by considering the hydrodynamic interactions on thrust allocation the overall performance (controllability and power consumption) of the DP system is improved.
机译:动态定位(DP)系统负责在多个海上作业中对船舶进行站位维护。 DP系统所需的力通过推力分配算法在可用的推力器中分配,该推力分配算法应准确,高效且稳定。这意味着有效力与所需力相匹配,同时使功耗最小。为了精确地产生所需的力,必须考虑推进器的物理限制和流体动力相互作用。始终对流体动力相互作用进行建模,以适应以下典型效果:推进器-船体,推进器-水流和推进器-推进器相互作用。该建模的结果是一个非线性优化问题,可以使用带有松弛变量的顺序二次规划(SQP)算法来解决。进行的DP模拟表明,通过考虑推力分配上的流体动力相互作用,可以改善DP系统的整体性能(可控制性和功耗)。

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