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Formation Feedback Applied to Behavior-Based Approach to Formation Keeping 被引量:1
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作者 苏治宝 陆际联 《Journal of Beijing Institute of Technology》 EI CAS 2004年第2期190-193,共4页
Approaches to the study of formation keeping for multiple mobile robots are analyzed and a behavior-based robot model is built in this paper. And, a kind of coordination architecture is presented, which is similar to ... Approaches to the study of formation keeping for multiple mobile robots are analyzed and a behavior-based robot model is built in this paper. And, a kind of coordination architecture is presented, which is similar to the infantry squad organization and is used to realize multiple mobile robots to keep formations. Simulations verify the validity of the approach to keep formation, which combines the behavior-based method and formation feedback. The effects of formation feedback on the performance of the system are analyzed. 展开更多
关键词 multiple mobile robots formation keeping behavior-based approach formation feedback
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Control of the patterns by using time-delayed feedback near the codimension-three Turing-Hopf-Wave bifurcations 被引量:1
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作者 王慧娟 王永杰 任芝 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第12期127-132,共6页
Control of the spatiotemporal patterns near the codimension-three Turing–Hopf–Wave bifurcations is studied by using time-delayed feedback in a three-variable Brusselator model. Linear stability analysis of the syste... Control of the spatiotemporal patterns near the codimension-three Turing–Hopf–Wave bifurcations is studied by using time-delayed feedback in a three-variable Brusselator model. Linear stability analysis of the system shows that the competition among the Turing-, Hopf- and Wave-modes, the wavenumber, and the oscillation frequency of patterns can be controlled by changing the feedback parameters. The role of the feedback intensity Pu played on controlling the pattern competition is equivalent to that of Pw, but opposite to that of Pv. The role of the feedback intensity Pu played on controlling the wavenumber and oscillation frequency of patterns is equivalent to that of Pv, but opposite to that of Pw. When the intensities of feedback are applied equally, changing the delayed time could not alter the competition among these modes, however, it can control the oscillation frequency of patterns. The analytical results are verified by two-dimensional (2D) numerical simulations. 展开更多
关键词 pattern formation reaction diffusion system time-delayed feedback
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