分离式舵不同操舵方式可产生差动舵角,目前,针对差动舵角对高速机动潜体的旋回运动特性研究尚未完全展开。为此,本文以分离式舵6DOF运动方程为基础,研究差动舵角对高速旋回潜体运动姿态、特别是横倾的控制能力,比较不同差动舵角对潜体定深、变深运动姿态的影响。研究结果表明,差动舵角对于潜体高速旋回时的运动姿态、特别是横倾有较强的控制、抑制能力。
Differential plane angle can be produced by different maneuvering modes of detach plane. At present, the cycle study of motion characteristics about detach plane angle has not been fully developed. Consequently, this paper bases on the 6DOF motion equation of detach plane to research the motion posture of submarine and the controlling capability of heel in high speed, and compare the influence of detach plane to the submarine in certain depth and in changing depth. The research show that detach plane angle has strong control and restraint ability for attitude control, especially for heel control of submarine in high speed.
2020,42(4): 107-111 收稿日期:2019-05-29
DOI:10.3404/j.issn.1672-7649.2020.04.021
分类号:U674
作者简介:张平(1982-),男,博士研究生,主要从事潜艇运行性能研究
参考文献:
[1] 陈俊峰, 田巍, 车梦虎. 潜艇定深旋回控制仿真与分析[J]. 舰船科学技术, 2007, 29(2): 116–118
CEHN Jun-feng, TIAN Wei, CHE Meng-hu. Modeling and analysis on the control of submarine’s certain depth and gyration motion[J]. Ship Science and Technology, 2007, 29(2): 116–118
[2] 王京齐, 施生达. 现代潜艇尾操纵面的发展现状[J]. 舰船科学技术, 2007, 29(1): 33–36
WANG Jin-qi, SHI Sheng-da. The developing situation of modern submarine’s tail control planes[J]. Ship Science and Technology, 2007, 29(1): 33–36
[3] 施生达. 潜艇操纵性[M]. 北京: 国防工业出版社, 1995:71–74.
[4] 徐亦凡. 潜艇操纵原理与方法[M].北京:兵器工业出版社,2002:136-145.
[5] 何晋秋, 佘莹莹. 基于鲁棒滑模控制的水下航行器运动控制仿真研究[J]. 舰船科学技术, 2016, 38(6): 92–96
HE Jin-qiu, SHE Ying-ying. Non-linear robust slide-model control for underwater vehicle[J]. Ship Science and Technology, 2016, 38(6): 92–96
[6] 胡坤, 武志东, 张建华. 潜艇水下旋回操纵运动特性仿真研究[J]. 舰船科学技术, 2015, 37(12): 18–22
HU Kun, WU Zhi-dong, ZHANG Jian-hua. Simulation research on gyratory maneuVerability of submarine underwater[J]. Ship Science and Technology, 2015, 37(12): 18–22
[7] FELDMAN J.DTNSRDC Revised standard submarine equations of motion[M]. DTNSRDC Report SPD-0393-09, 1979.
[8] Motton Gertier, Grant R. Hagen. Standard equations of motion for submarine simulation[M]. SNAME: AD-652861, 1967.