高速船舶电液舵机构造原理比较分析

Sergey Vasilevich Popov, O. A. Burmakin, Yuriy S. Malyshev
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引用次数: 0

摘要

研究了用于小型和高速船舶换舵的简易型和随动型电子液压舵机的组成和控制原理。对特定船型现有舵机的功能进行了分析。形成了与所分析舵机的控制和电力驱动系统的元件基础和组成有关的工作缺陷。实验结果表明了直流电泵驱动电机液压系统的运行特点。提出了提高电力驱动能源性能的各种技术解决方案。对使用交流和直流驱动的转向机的运行情况进行了比较分析。评估了转向机在正常和紧急模式下的运行情况。考虑到分析过程中确定的运行特征和俄罗斯船级社的要求,提出了简单和后续动作控制系统的结构图。展示了使用变频器-异步电动机系统(由交流电网络和应急电源供电)实施 SM 电力驱动的可能性。提出了使用高压电池为液压站泵提供电力驱动的方案。根据所建议的高速船液压站控制系统结构图,展示了为舵机和其他船舶机械装置创建家用装置的可能性。建议使用国产电气设备为总排水量不超过 100 吨的高速船建造舵机。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comparative analysis of the principles of high-speed vessels electrohydraulic steering machines construction
The composition and control principles of steering electro-hydraulic machines of a simple and follower type, intended for rudder shifting of small and high-speed vessels are considered. An analysis of the functioning of existing steering gears for the specified group of vessels was carried out. Deficiencies in the work associated with the element base and composition of the control and electric drive systems of the analyzed steering machines have been formed. The features of the operation of hydraulic systems with drive electric motors of pumps made on direct current, revealed as a result of experiments, are shown. Variants of technical solutions for improving the energy performance of the electric drive are proposed. A comparative analysis of the operation of steering machines with AC and DC drives has been carried out. An assessment of steering machines operation in normal and emergency modes is given. Structural diagrams of control systems of simple and follow-up action are proposed, taking into account the operating features identified during the analysis and the requirements of the Russian classification society. The possibility of implementing an SM electric drive built using a frequency converter – asynchronous motor system powered by an alternating current network and an emergency source has been shown. Options for the implementation of electric drives for pumps of hydraulic stations with a high-voltage battery are proposed. The possibility of creating domestic installations for steering and other ship mechanisms, according to the proposed structural diagrams of control systems for hydraulic stations for high-speed ships, is shown. Recommendations are given for the construction of steering gears for high-speed vessels with a total displacement of up to 100 tons using domestic electrical equipment.
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