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Nonangular MPC-Based Thrust Allocation Algorithm for Marine Vessels—A Study of Optimal Thruster Commands

机译:基于MPC的船舶动力推力分配算法—最优推力器指令研究

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In this paper, a thrust allocation algorithm for marine vessels based on model predictive control (MPC) theory and a nonangular vector formulation is presented and studied. The main objective in this paper is to highlight the potentials of using an optimal thrust allocation algorithm including a time horizon to reduce the power consumption as well as reducing the environmental disturbances in the thruster commands. The proposed thrust allocation algorithm is compared with a one-step optimization algorithm in a benchmarking test. A one-step thrust allocation algorithm is an optimization algorithm with a time horizon that includes only one sample. When using a longer time horizon in the proposed algorithm, the thrust allocation has the potential of optimizing rate limited states in the long run, e.g., whether it would be beneficial to rotate a thruster or to increase or decrease the commanded thrust when thruster biasing is considered as an option. Preliminary case studies are presented where different cost function weights and horizon lengths are compared. The finite time horizon in the MPC thrust allocation algorithm also makes it possible to affect the dynamics of the optimized thruster signals since it can use the entire time horizon to reach its objective. This is very important when considering reducing the thrust rates when controlling a marine vessel in dynamic positioning operations since wave filters never succeed in filtering out all oscillatory environmental effects. Thus, an optimal thrust allocation algorithm with well-chosen cost function weights, along with thruster biasing, would reduce the magnified oscillations in the produced thrust, while keeping the power consumption at a minimum, which has been devoted the main focus of this paper.
机译:提出并研究了基于模型预测控制(MPC)理论和非角度矢量公式的船舶推力分配算法。本文的主要目的是强调使用包括时间范围的最佳推力分配算法的潜力,以减少功率消耗并减少推力器指令中的环境干扰。在基准测试中,将提出的推力分配算法与单步优化算法进行了比较。一步推力分配算法是具有仅包括一个样本的时间范围的优化算法。当在所提出的算法中使用较长的时间范围时,从长远来看,推力分配具有优化速率限制状态的潜力,例如,当推力器偏置为时,旋转推力器还是增大或减小命令推力是否有益。被视为一种选择。提出了初步案例研究,其中比较了不同的成本函数权重和视界长度。 MPC推力分配算法中的有限时间范围也可以影响优化的推进器信号的动力学,因为它可以使用整个时间范围来达到其目标。当在动态定位操作中控制船舶时考虑降低推力时,这非常重要,因为波动滤波器永远无法成功滤除所有振荡环境影响。因此,具有最佳成本函数权重的最佳推力分配算法,加上推力器偏置,将减小产生的推力的放大振动,同时将功耗降至最低,这是本文的主要重点。

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