Control Strategy of Electric Propulsion System to Improve Ship Dynamics

Sanggi Ko, Jong-Seop Yun, S. Sul, Shin-Won Kang, W. Park, Sanghoon Kim
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Abstract

In this paper, a strategy for controlling a powertrain of the electric propulsion ships is proposed. The proposed control strategy enables rapid acceleration and deceleration of the vessel by actively limiting output torque reflecting limitations of the components in the powertrain. The propulsion motor's output power and its rate are both controlled to satisfy the limits of each component, including gear and propeller. The effectiveness of the proposed method has been verified based on the extensive computer simulations of the powertrain of a target ship and a small-scaled experiment. As a result of a simulation, an acceleration time of a 2300-ton class electric propulsion ship has been reduced from 308 seconds to 142 seconds.
改善船舶动力的电力推进系统控制策略
提出了一种电力推进船舶动力系统的控制策略。所提出的控制策略通过主动限制输出扭矩来实现船舶的快速加速和减速,这反映了动力系统中组件的局限性。对推进电机的输出功率和转速进行控制,以满足包括齿轮和螺旋桨在内的各个部件的极限。通过对目标船动力系统的大量计算机仿真和小型实验,验证了所提方法的有效性。根据模拟结果,2300吨级电力推进船的加速时间从308秒缩短到142秒。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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