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干扰条件下无人艇编队有限时间同步控制

Finite Time Synchronized Formation Control of Unmanned Surface Vehicles With External Disturbances
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摘要 针对有限时间控制中各状态分量收敛时间不同问题,提出一种无人艇编队有限时间同步控制框架,在此框架下设计的有限时间同步编队控制方法可巧妙地达到无人艇所有自由度编队误差在同一时刻收敛到平衡点.首先,针对现有干扰观测器与时间同步稳定框架不兼容问题,设计有限时间同步干扰观测器;然后,利用比例保持特性设计有限时间同步编队控制器,并验证了所提控制方法的稳定性;最后,通过3艘无人艇编队进行仿真实验,实验结果验证了所提控制方法的有效性和优越性.所提控制方法对有限时间同步控制需求的航海、航空航天和工业领域具有现实意义. A finite time synchronization control framework for unmanned surface vehicles is proposed to address the issue of different convergence times of various states in finite time control.The finite time synchronization formation control method designed under this framework can cleverly achieve that all degrees of freedom errors of unmanned surface vehicles converge to an equilibrium point at the same time.Firstly,to address the issue of incompatibility between existing disturbance observers and time synchronization stabilization frameworks,a finite time synchronization disturbance observer is designed.Furthermore,utilizing the ratio persistence property,a finite time synchronous formation controller is designed,and the stability of the proposed control algorithm is demonstrated.Finally,simulation research was conducted on three unmanned surface vehicles,and the results verified the effectiveness and superiority of the proposed control algorithm.The control method proposed in this article has practical significance for the fields of navigation,aerospace,and industry that require time-synchronous control.
作者 王端松 李东禹 梁晓玲 WANG Duan-Song;LI Dong-Yu;LIANG Xiao-Ling(College of Electrical and Photo electronic Engineering,West Anhui University,Lu'an 237012;School of Cyber Science and Technology,Beihang University,Beijing 100191;College of Marine Engineering,Dalian Maritime University,Dalian 116026)
出处 《自动化学报》 EI CAS CSCD 北大核心 2024年第5期1047-1058,共12页 Acta Automatica Sinica
基金 国家自然科学基金(62103028,52301417) 皖西学院科研启动基金(WGKQ2022050) 浙江省自然科学基金(LGG22F030018)资助。
关键词 时间同步控制 无人艇 编队 有限时间控制 干扰观测器 Time-synchronous control unmanned surface vehicles formation finite time control disturbance observer
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