Computational study of the hovercraft hydraulic transmission

N. Sosnovsky, V. Nguyen
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Abstract

Implementation of the vehicles optimal operating modes and improvement of their energy efficiency appears to be an urgent task. The paper considers a hovercraft with the hydraulic transmission. Combined mathematical model of hydraulic transmission and fan supplying air to the air cushion section was developed. Automatic control of the pump swashplate inclination angle with the vessel moving upon different support surfaces was analyzed in the MATLAB/Simulink environment in terms of increasing efficiency of the fan and system operation. The system calculation scheme is presented, and acceptable transient characteristics were obtained. The developed mathematical model makes it possible to select and assess optimal frequency of the hydraulic motor shaft rotation with the vessel moving upon different surfaces, analyze and improve the system energy efficiency. Using the proposed transmission control unit in a hovercraft allows maintaining the fan efficiency and the required vessel height above the supporting surface.
气垫船液压传动的计算研究
实现汽车的最佳运行模式,提高汽车的能源效率是一项紧迫的任务。本文研究了一种液压传动气垫船。建立了液压传动与风机向气垫段送风的联合数学模型。从提高风机效率和系统运行效率的角度出发,在MATLAB/Simulink环境下,对船舶在不同支撑面上运动时泵斜盘倾角的自动控制进行了分析。给出了系统的计算方案,得到了可接受的暂态特性。所建立的数学模型可以选择和评估船舶在不同表面上运动时液压马达轴的最佳旋转频率,分析和提高系统的能量效率。在气垫船中使用提议的传动控制单元可以保持风扇效率和所需的支撑表面以上的船舶高度。
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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