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国家自然科学基金(60974112)

作品数:9 被引量:28H指数:4
相关作者:朱恩强张婷赵双柱刘晓娜马彦荣更多>>
相关机构:兰州文理学院北京大学西北师范大学更多>>
发文基金:国家自然科学基金中国博士后科学基金国家重点基础研究发展计划更多>>
相关领域:理学生物学自动化与计算机技术电气工程更多>>

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9 条 记 录,以下是 1-10
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路与路及路与圈笛卡尔积图的树核度
2016年
利用组合的方法研究路与路、路与圈笛卡尔积图的树核度.特别地,给出了路与路、路与圈笛卡尔积图树核度的精确值,并刻画了笛卡尔积图树核度与原图树核度间的关系.
张婷朱恩强
关键词:树核笛卡尔积
若干Mycielski图邻点可区别Ⅰ-均匀全染色被引量:7
2018年
图G的一个邻点可区别Ⅰ-均匀全染色是指对图G的邻点可区别的一个Ⅰ-全染色f,若f还满足||T_i|-|T_j||≤1(i≠j),其中T_i=V_i∪E_i={v|v∈V(G),f(v)=i}∪{e|e∈E(G),f(e)=i},则称f为图G的一个邻点可区别Ⅰ-均匀全染色,而图G的邻点可区别Ⅰ-均匀全染色中所用的最少颜色数称为图G的邻点可区别Ⅰ-均匀全色数.通过函数构造法,得到了M(Pn)、M(Cn)、M(Sn)的邻点可区别Ⅰ-均匀全色数,并且满足猜想.
张婷朱恩强赵双柱杜佳
关键词:MYCIELSKI图
S_m∨F_n的邻点可区别Ⅰ-全染色及相关结论被引量:2
2016年
讨论了S_m∨F_n的邻点可区别Ⅰ-全染色,利用构造函数法,构造了一个从点边集V(G)∪E(G)到色集合{1,2,…,k}的函数,给出了S_m∨F_n的一种邻点可区别Ⅰ-全染色方案,得到了其邻点可区别Ⅰ-全色数.并在此种染色方法的基础上,通过适当调整S_m∨F_n的边及其染色,得到了S_m∨S_n,S_m∨W_n,F_m∨F_n的邻点可区别I-全色数,且满足猜想:χiat(G)≤Δ(G)+2.
张婷朱恩强韩彩霞
关键词:联图
Molecular Computations of the Maximal Clique Problem Using DNA Self-assembly
In recent years,DNA self-assembly has widely developed in the fields of DNA computing and nanotechnology.Up to...
Yang Jing1
基于群体决策自主控制的街道照明系统被引量:1
2017年
论文提出了一种街道照明的自主控制系统。所有的灯节点组成了一个基于无线传感器网络(WSN)的灯组,所有的灯构件通过形成树形拓扑与灯领导相通。灯构件周期性地使用光传感器收集环境照明。当发现照明低于预设阈值时,灯构件将向灯领导发送开灯投票,灯领导者通过投票进行组决策,并做出相应决定,并发送决定给所有灯组成员打开或关闭所有路灯网络。故障消息可以通过GPRS网络发送到远程路灯维护中心。该系统可以自动响应光感变化。群体决策的方法提高了抗干扰能力和照明控制系统的智能水平。
程新华张健
关键词:光传感器无线传感器网络群体决策街道照明
Molecular logic computing model based on self-assembly of DNA nanoparticles被引量:11
2011年
In this paper, a logic computing model was constructed using a DNA nanoparticle, combined with color change technology of DNA/Au nanoparticle conjugates, and DNA computing. Several important technologies are utilized in this molecular computing model: DNA self-assembly, DNA/Au nanoparticle conjugation, and the color change resulting from Au nanoparticle aggregation. The simple logic computing model was realized by a color change, resulting from changing of DNA self-assembly. Based on this computing model, a set of operations computing model was also established, by which a simple logic problem was solved. To enlarge the applications of this logic nanocomputing system, a molecular detection method was developed for H1N1 virus gene detection.
ZHANG ChengYANG JingXU Jin
关键词:DNA分子逻辑运算自组装DNA计算
DNA Computation Model Based on Self-Assembled Nanoparticle Probes for 0-1 Integer Programming Problem
0-1 integer programming problem is an important problem in opsearch with widespread application.In this paper,...
Fei Li1
Distributed implementation of the genetic double-branch structure in Escherichia coli被引量:1
2014年
Because of the simplicity of cells, the key to building biological computing systems may lie in constructing distributed systems based on cell–cell communication. Guided by a mathematical model, in this study we designed,simulated, and constructed a genetic double-branch structure in the bacterium Escherichia coli. This genetic double-branch structure is composed of a control cell and two reporter cells.The control cell can activate different reporter cells according to the input. Two quorum-sensing signal molecules, 3OC12-HSL and C4-HSL, form the wires between the control cell and the reporter cells. This study is a step toward scalable biological computation, and it may have many potential applications in biocomputing, biosensing, and biotherapy.
Mei ChenLu ZhangJin Xu
关键词:分布式系统生物计算
Prediction of Interspecies Transmission for Avian Influenza A Virus Based on BP Neural Network
The prediction of the transmissibility of avian influenza A viruses from birds to humans is very important for...
Xiaoli Qiang1,Zheng Kou2 School of Electronic Engineering and Computer Science,Peking University,Beijing 100871,P.R.China
A molecular computing model for 3-coloring graph problem based on circular DNA branch migration
A 3-coloring graph problem,one of the NP-problems,has been solved using the method of circular DNA displacemen...
Zhang Cheng1
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