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作品数:523被引量:1271H指数:15
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Optimization of communication topology for persistent formation in case of communication faults
《Chinese Physics B》2023年第7期610-624,共15页王国强 罗贺 胡笑旋 台建玮 
Project supported by the National Natural Science Foundation of China(Grant Nos.71871079,72271076,71971075,and 71671059);the Anhui Provincial Natural Science Foundation,China(Grant No.1808085MG213).
To address the optimization problem of communication topology for persistent formation in the case of communication faults such as link interruption,transmitter failure,and receiver failure a two-stage model including...
关键词:persistent formation communication topology formation communication cost communication fault 
H_(∞) state estimation for Markov jump neural networks with transition probabilities subject to the persistent dwell-time switching rule
《Chinese Physics B》2021年第6期88-95,共8页Hao Shen Jia-Cheng Wu Jian-Wei Xia Zhen Wang 
supported by the National Natural Science Foundation of China (Grant Nos. 61873002, 61703004, 61973199, 61573008, and 61973200)。
We investigate the problem of H_(∞) state estimation for discrete-time Markov jump neural networks. The transition probabilities of the Markov chain are assumed to be piecewise time-varying, and the persistent dwell-...
关键词:Markov jump neural networks persistent dwell-time switching rule H_(∞)state estimation meansquare exponential stability 
Review of photoresponsive properties at SrTiO_3-based heterointerfaces
《Chinese Physics B》2018年第11期226-234,共9页Hong Yan Zhaoting Zhang Shuanhu Wang Kexin Jin 
Project supported by the National Natural Science Foundation of China(Grant Nos.51572222 and 11604265);Innovation Foundation for Doctor Dissertation of Northwestern Polytechnical University,China(Grant No.CX201836)
The two-dimensional electron gas at SrTiO3-based heterointerfaces has received a great deal of attention in recent years owing to their potential for the exploration of emergent physics and the next generation of elec...
关键词:complex oxides LaAlO3/SrTiO3 heterointerfaces two-dimensional electron gas persistent pho-toconductivity (PPC) 
Generation of optimal persistent formations for heterogeneous multi-agent systems with a leader constraint被引量:2
《Chinese Physics B》2018年第2期645-654,共10页王国强 罗贺 胡笑旋 
Project supported by the National Natural Science Foundation of China(Grant Nos.71671059,71401048,71521001,71690230,71690235,and 71472058);the Anhui Provincial Natural Science Foundation,China(Grant No.1508085MG140)
In this study, we consider the generation of optimal persistent formations for heterogeneous multi-agent systems, with the leader constraint that only specific agents can act as leaders. We analyze three modes to cont...
关键词:leader constraint heterogeneous multi-agent system optimal persistent formation minimum costarborescence 
Derivation of persistent time for anisotropic migration of cells
《Chinese Physics B》2017年第12期55-61,共7页刘艳平 张晓翠 吴宇宁 刘雯 李翔 刘如川 刘雳宇 帅建伟 
Project supported by the National Natural Science Foundation of China(Grant Nos.31370830,11675134,11474345,and 11604030);the State Key Development Program for Basic Research of China(Grant No.2013CB837200);the 111 Project,China(Grant No.B16029);the China Postdoctoral Science Foundation(Grant No.2016M602071)
Cell migration plays an essential role in a wide variety of physiological and pathological processes. In this paper we numerically discuss the properties of an anisotropic persistent random walk (APRW) model, in whi...
关键词:cell migration random walk Langevin equation cancer 
The effect of k-cubic Dresselhaus spin orbit coupling on the decay time of persistent spin helix states in semiconductor two-dimensional electron gases
《Chinese Physics B》2014年第2期437-442,共6页柴政 胡茂金 王瑞强 胡梁宾 
Project supported by the National Natural Science Foundation of China (Grant No.10874049)
We study the theoretical effect of k-cubic (i.e, cubic-in-momentum) Dresselhaus spin-orbit coupling on the decay time of persistent spin helix states in semiconductor two-dimensional electron gases. We show that the...
关键词:persistent spin helix state Rashba spin-orbit coupling k-cubic Dresselhaus spin-orbit coupling decay time 
Generation of minimally persistent circle formation for a multi-agent system被引量:3
《Chinese Physics B》2014年第2期614-622,共9页罗小元 邵士凯 张玉燕 李绍宝 关新平 刘志新 
Project supported by the National Basic Research Program of China (Grant No.2010CB731800);the National Natural Science Foundation of China (Grant Nos.60934003,61074065,and 61375105);the Natural Science Foundation of Hebei Province,China (Grant No.F2012203119)
In this paper, two methods of generating minimally persistent circle formation are presented. The proposed methods adopt a leader-follower strategy and all followers are firstly motivated to move into the leader's in...
关键词:multiagent system formation control minimally persistent graph numbering strategy 
Automatic generation of min-weighted persistent formations被引量:10
《Chinese Physics B》2009年第8期3104-3114,共11页罗小元 李绍宝 关新平 
supported by the National Natural Science Foundation for Distinguished Young Scholars of China (Grant No 60525303);the National Natural Science Foundation of China (Grant No 60704009);Doctor Fund of Yanshan University (Grant NoB203)
This paper researched into some methods for generating min-weighted rigid graphs and min-weighted persistent graphs. Rigidity and persistence are currently used in various studies on coordination and control of autono...
关键词:min-weighted persistent graph rigidity matrix minimally rigid graph formation multi-agent 
Persistent spin current in a quantum wire with weak Dresselhaus spin-orbit coupling
《Chinese Physics B》2007年第2期533-536,共4页盛威 王羿 周光辉 
Project supported by the National Natural Science Foundation of China (Grant No 10574042) and the Scientific Research Fund of Hunan Provincial Education Department (Grant No 04A031).
The spin current in a parabolically confined semiconductor hcterojunction quantum wire with Drcsselhaus spinorbit coupling is theoretically studied by using the perturbation method. The formulae of the elements for li...
关键词:semiconductor heterojunction quantum wire Dresslhuaus spin-orbit coupling spin current 
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