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This paper studies the multi-agent tracking problem of a third-order maneuvering target under uncertain communication environments. Each tracking agent is assumed to be a third-order system and can only use its own and neighbors' position, velocity, and acceleration information to design its control input. In this work, the uncertain communication environments are modelled by a finite number of constant Laplacian matrices together with their corresponding scheduling functions. Sufficient conditions for the existence of a tracking strategy have been expressed in terms of the solvability of linear matrix inequalities. Finally, a numerical example is employed to demonstrate the effectiveness of the proposed tracking strategy. 相似文献
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We explore the tracking problem of a maneuvering target. Tracking agents with third-order kinematics can communicate with each other via wireless network. The communication network topology is arbitrary rather than switches among several fixed topologies. The information sharing and interaction among agents are position, velocity, and acceleration. Some sufficient conditions of tracking strategy have been proposed. Finally, a numerical example is employed to demonstrate the effectiveness of proposed tracking strategy. 相似文献
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综述了双变量电动静液作动系统近20年来的发展历程和研究现状.重点从作动系统的结构创新、数学建模与仿真方法、控制策略3个方面论述了双变量电动静液作动系统研究所取得的主要研究成果.探讨了双变量电动静液作动系统换向方式选择、量化特性分析、热控制与动态性能提升等目前亟待分析解决的问题,同时指出上述问题将是该型作动系统的未来重点研究方向. 相似文献
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