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Synchronization and Control of Halo-Chaos in Beam Transport Network with Small World Topology
  • 时间:0
  • 分类:O572.211[理学—粒子物理与原子核物理;理学—物理] O233[理学—运筹学与控制论;理学—数学]
  • 作者机构:[1]China Institute of Atomic Energy, P.O. Box 275-81, Beijing 102413, China
  • 相关基金:The project supported by the Key Projects of National Natural Science Foundation of China under Grant No. 70431002 and National Natural Science Foundation of China under Grant Nos. 70371068 and 10247005
  • 相关项目:非线性网络的动力学复杂性研究
中文摘要:

同步条件二种小世界(SW ) 网络一再学习。小世界拓扑学罐头大部分在横梁运输网络( BTN )的动态行为上影响,如果 BTN 与 SW 拓扑学被构造,全球线性联合和特殊线性反馈能也认识到横梁光圈混乱的同步控制 asper 在有 SW 拓扑学的 BTN 的碘的状态分别地。这重要结果能提供一个有效方法因为试验性的学习和在驱使放射性的 high-currentaccelerator 的 BTN 的设计设计清洗原子力量系统,并且可以为光圈混乱在未来的应用有潜在的使用安全通讯。

英文摘要:

The synchronous conditions of two kinds of the small-world (SW) network are studied. The small world topology can affect on dynamical behaviors of the beam transport network (BTN) largely, if the BTN is constructed with the SW topology, the global linear coupling and special linear feedback can realize the synchronization control of beam halo-chaos as well as periodic state in the BTN with the SW topology, respectively. This important result can provide an effective way for the experimental study and the engineering design of the BTN in the high-current accelerator driven radioactive clean nuclear power systems, and may have potential use in prospective applications for halo-chaos secure communication.

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