A load-balancing scheme for IEEE 802.11 WLANs based on cooperative game theory is presented.A coalition among the access points(APs) with overlapping coverage is formed to share the network load through a game.First...A load-balancing scheme for IEEE 802.11 WLANs based on cooperative game theory is presented.A coalition among the access points(APs) with overlapping coverage is formed to share the network load through a game.Firstly, the candidate APs submit their load-competing strategies(i.e., the amount of user traffic they can admit in an AC/game period) to the control AP.Secondly, the control AP solves the game by the method of shapley value, which is the maximum traffic allocated to each AP in an AC/game period.Finally, the game is repeated periodically to distribute the traffic load among the APs.Simulation results show that the proposed game can balance the network load effectively compared with the IEEE 802.11 standard balancing solution.展开更多
【背景】母乳是一个重要的益生菌筛选库,其中植物乳杆菌是一种用途广泛、适应性强的益生菌。然而不同菌株具有不同的功能,现有的生理生化方法对其潜在益生特性研究十分有限,有必要采用高通量的方法寻找具有种群特异性的优质益生菌。【...【背景】母乳是一个重要的益生菌筛选库,其中植物乳杆菌是一种用途广泛、适应性强的益生菌。然而不同菌株具有不同的功能,现有的生理生化方法对其潜在益生特性研究十分有限,有必要采用高通量的方法寻找具有种群特异性的优质益生菌。【目的】结合菌株生化特征在全基因组的测序与分析的基础上对两株植物乳杆菌的潜在功能进行预测,并重点找寻与肠液耐受性及细菌素的合成相关的基因,即在基因组的结构上对菌株的表型进行探究。【方法】分离筛选出两株母乳源植物乳杆菌MP55、MP37,并利用Illumina genome analyzer对菌株的全基因组进行测序,采用Prokka软件对细菌基因组进行注释,采用Carbohydrate-active enzymes(CAZy)、Koyto encyclopedia of genes and genomes(KEGG)和Clusters of orthologous genes(COG)数据库对基因组进行功能注释;同时采用Prodigal、RNAmmer等工具对编码序列、核糖体RNA进行预测,并用CGView软件绘制菌株的基因组环形图谱。【结果】通过基因组装得到了两株植物乳杆菌的全基因组信息,植物乳杆菌MP37、MP55基因组大小分别为3204421 bp和3299180 bp;(G+C)mol%含量分别为44.36%和44.46%;分别包含3012个和3101个DNA编码序列,结合菌株生化特征在基因组上找到4个与肠液耐受相关的基因及一段细菌素合成相关基因簇。基因组序列原始数据和拼接结果已提交至"gcMeta"平台。【结论】通过高通量测序分析在基因组水平上揭示了植物乳杆菌MP55、MP37在肠道存活性与抑制病原菌相关的可能机理。植物乳杆菌MP55、MP37是两株潜在的益生菌候选菌株,实验结果为进一步阐明其益生菌特性的功能机制提供了遗传学基础。展开更多
基金supported by the Aviation Science Fund (20080196005)
文摘A load-balancing scheme for IEEE 802.11 WLANs based on cooperative game theory is presented.A coalition among the access points(APs) with overlapping coverage is formed to share the network load through a game.Firstly, the candidate APs submit their load-competing strategies(i.e., the amount of user traffic they can admit in an AC/game period) to the control AP.Secondly, the control AP solves the game by the method of shapley value, which is the maximum traffic allocated to each AP in an AC/game period.Finally, the game is repeated periodically to distribute the traffic load among the APs.Simulation results show that the proposed game can balance the network load effectively compared with the IEEE 802.11 standard balancing solution.
文摘【背景】母乳是一个重要的益生菌筛选库,其中植物乳杆菌是一种用途广泛、适应性强的益生菌。然而不同菌株具有不同的功能,现有的生理生化方法对其潜在益生特性研究十分有限,有必要采用高通量的方法寻找具有种群特异性的优质益生菌。【目的】结合菌株生化特征在全基因组的测序与分析的基础上对两株植物乳杆菌的潜在功能进行预测,并重点找寻与肠液耐受性及细菌素的合成相关的基因,即在基因组的结构上对菌株的表型进行探究。【方法】分离筛选出两株母乳源植物乳杆菌MP55、MP37,并利用Illumina genome analyzer对菌株的全基因组进行测序,采用Prokka软件对细菌基因组进行注释,采用Carbohydrate-active enzymes(CAZy)、Koyto encyclopedia of genes and genomes(KEGG)和Clusters of orthologous genes(COG)数据库对基因组进行功能注释;同时采用Prodigal、RNAmmer等工具对编码序列、核糖体RNA进行预测,并用CGView软件绘制菌株的基因组环形图谱。【结果】通过基因组装得到了两株植物乳杆菌的全基因组信息,植物乳杆菌MP37、MP55基因组大小分别为3204421 bp和3299180 bp;(G+C)mol%含量分别为44.36%和44.46%;分别包含3012个和3101个DNA编码序列,结合菌株生化特征在基因组上找到4个与肠液耐受相关的基因及一段细菌素合成相关基因簇。基因组序列原始数据和拼接结果已提交至"gcMeta"平台。【结论】通过高通量测序分析在基因组水平上揭示了植物乳杆菌MP55、MP37在肠道存活性与抑制病原菌相关的可能机理。植物乳杆菌MP55、MP37是两株潜在的益生菌候选菌株,实验结果为进一步阐明其益生菌特性的功能机制提供了遗传学基础。