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Titlebook: Bio-inspired Computing: Theories and Applications; 14th International C Linqiang Pan,Jing Liang,Boyang Qu Conference proceedings 2020 Sprin

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發(fā)表于 2025-3-21 19:59:32 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Bio-inspired Computing: Theories and Applications
期刊簡稱14th International C
影響因子2023Linqiang Pan,Jing Liang,Boyang Qu
視頻videohttp://file.papertrans.cn/187/186390/186390.mp4
學(xué)科分類Communications in Computer and Information Science
圖書封面Titlebook: Bio-inspired Computing: Theories and Applications; 14th International C Linqiang Pan,Jing Liang,Boyang Qu Conference proceedings 2020 Sprin
影響因子This two-volume set (CCIS 1159 and CCIS 1160) constitutes the proceedings of the 14th International Conference on Bio-inspired Computing: Theories and Applications, BIC-TA 2019, held in Zhengzhou, China, in November 2019..The 122 full papers presented in both volumes were selected from 197 submissions. The papers in the two volumes are organized according to the topical headings: evolutionary computation and swarm intelligence; ?bioinformatics and systems biology; complex networks; DNA and molecular computing; neural networks and articial intelligence..
Pindex Conference proceedings 2020
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Adaptive Synchronization of Nonlinear Complex Dynamical Networks with Time-Delays and Sampled-Datative strategy to coupling strengths and feedback gains. According to Lyapunov theorem, it is testified that the agents of sub-groups can converge those synchronous states respectively under some special conditions. In addition, some simulations are proposed to illustrate the theoretical results.
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Controllability of Some Special Topologies with Time-Delays sufficient conditions are established for special topologies, respectively. An algorithm for controllability of multi-agent systems is introduced. Then the controllability of some special topologies are tested by algorithm. And some main conclusions can be obtained about different topologies. The r
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Controllability of Second-Order Discrete-Time Multi-agent Systems with Switching Topology systems are investigated under the motion analysis of discrete-time linear systems and two necessary and sufficient conditions are established for controllability in terms of the system matrices. Second, it is shown that, if both the position and the velocity information interaction topologies are
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Base Conversion Model Based on DNA Strand Displacementimal system. In the field of DNA calculation, binary numerical calculation is relatively mature, but it is difficult to implement decimal calculation. So it is very necessary to study the conversion of binary system to decimal system. In this paper, DNA strand displacement are used to construct a lo
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