欠驱动悬停式自主水下航行器沿圆周轨迹移动到某一点的控制

M. F. Yahya, M. Arshad
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引用次数: 2

摘要

一个悬停的自主水下航行器通常至少有四个推进器,这使它能够向各个方向推进。通过减少推进器的数量,AUV将有更多的空间来容纳其他设备。然而,AUV将成为一个欠驱动系统。从文献上看,对欠驱动水下航行器的控制进行了各种各样的研究。然而,许多工作只考虑了AUV运动的垂直或水平方面以及单一类型的轨迹问题。本文提出了比例控制器和比例积分控制器来解决三维空间中移动到点和沿路径的两种轨迹问题。结果表明,该控制的实施大大提高了系统的响应速度,减小了稳态误差,从而达到了期望的输出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Control of an under actuated hovering-type autonomous underwater vehicle for moving to a point and following a circular path
A hovering autonomous underwater vehicle usually has at least four thrusters which gives it the ability to propel in all directions. By decreasing the number of thruster, the AUV will have more room to accommodate for other devices. However, the AUV would become an under actuated system. From literature, there are various works had been studied to control an under actuated AUV. However, many of the works only considers either vertical or horizontal aspects of the AUV motion and single type of trajectory problem. In this paper, proportional and proportional-integral controllers are proposed to solve two trajectory problems of moving to a point and following a path in 3 dimensional spaces. Results show that the implementation of the control improves the response of the system to be much faster and reduces steady state error so that desired output is achieved.
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