To improve the comfort and safety of ships during navigation, using intelligent algorithms to optimize the design of ship propulsion shafting and improving the transmission efficiency of ship propulsion shafting is an important research direction for ship structure optimization design. By comparing and analyzing the widely used intelligent algorithms, the most suitable intelligent optimization algorithm for the transmission efficiency of ship propulsion shafting is selected from the perspective of ship shafting dynamics and tribology. Taking a ship comprehensive performance test platform as the research object, the multi-objective optimization of the power transmission of the propulsion shafting is carried out. The research shows that the optimization algorithm can effectively improve the shafting transmission efficiency, and has certain feasibility.
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