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Adaptive sliding-mode path following control system of the underactuated USV under the influence of ocean currents 被引量:9
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作者 CHEN Xiao LIU Zhong +2 位作者 ZHANG Jianqiang ZHOU Dechao DONG Jiao 《Journal of Systems Engineering and Electronics》 SCIE EI CSCD 2018年第6期1271-1283,共13页
The path-following control of the asymmetry underactuated unmanned surface vehicle(USV) under external disturbances such as unknown constant and irrational ocean currents is discussed, and an adaptive sliding-mode pat... The path-following control of the asymmetry underactuated unmanned surface vehicle(USV) under external disturbances such as unknown constant and irrational ocean currents is discussed, and an adaptive sliding-mode path-following control system is proposed, which comprises a path-variable updated law,a modified integral line-of-sight(ILOS) guidance law based on a time-varying lookahead distance and adaptive feedback linearizing controllers combined with sliding-mode technique. A more accurate USV model without the assumption of having diagonal inertia and damping matrices is first presented, aiming at improving the performance of the path-following control. Next, the coordinate transformation is adopted to decouple the sway dynamic from the rudder angle, and the path-following errors dynamics without non-singular problem are presented in the moving Frenet-Serret frame. Then, based on the cascaded theorem and the adaptive sliding-mode method, the adaptive control law of position errors and course error are designed, among which the lookahead distance and integral gain are all computed as different functions of cross-track error to estimate and compensate the sideslip angle caused by external disturbances adaptively. Finally, according to the Lyapunov and cascaded theorem, the control system proposed is proved to be uniform globally asymptotic stability(UGAS) and uniform semiglobal exponential stability(USGES) when the control objectives are all achieved. Simulation results illustrate the precision and high-quality performance of this new controller. 展开更多
关键词 sliding-mode control unmanned surface vehicle(USV) integral line-of-sight(ilos) path following proof of stability
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基于改进积分视线导引策略的欠驱动无人水面艇路径跟踪 被引量:15
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作者 陈霄 刘忠 +2 位作者 张建强 董蛟 周德超 《北京航空航天大学学报》 EI CAS CSCD 北大核心 2018年第3期489-499,共11页
路径跟踪控制是无人水面艇(USV)自主完成各项任务使命的关键技术之一,受到国内外运动控制领域的普遍关注。为提高风浪流等外界环境干扰下,无人水面艇(USV)路径跟踪控制的准确性和鲁棒性,研究海流等外界扰动环境下一类非对称欠驱动无人... 路径跟踪控制是无人水面艇(USV)自主完成各项任务使命的关键技术之一,受到国内外运动控制领域的普遍关注。为提高风浪流等外界环境干扰下,无人水面艇(USV)路径跟踪控制的准确性和鲁棒性,研究海流等外界扰动环境下一类非对称欠驱动无人水面艇的路径跟踪问题,提出了2种改进积分视线(ILOS)导引策略,并基于改进导引策略和反馈控制思想实现了无人水面艇水平面的路径跟踪。与传统ILOS导引策略相比,第1种改进策略具有变积分增益能够避免积分饱和及超调现象;第2种改进策略在前者的基础上将前视距离设计为时变量,使得无人水面艇操纵更加灵活,其中积分增益和前视距离均为垂直距离误差的不同函数,引导无人水面艇灵活快速地跟踪期望路径。基于级联系统理论证明了当所有控制目标实现时,控制系统为全局k-指数稳定(GKES)的,理论分析和仿真实验证明了算法的有效性和先进性。 展开更多
关键词 欠驱动控制 无人水面艇(USV) 积分视线(ilos)导引 路径跟踪 级联系统 稳定性证明
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