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On the number of star samples to find a vertex or edge with given degree in a graph

机译:在明星样本的数量上,找到具有图形中给定度的顶点或边缘

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A (single) star sample of a large graph consists of a vertex, its neighbors, and the degrees of each neighbor. Estimators are derived for the expected number of star samples required to find any vertex with a given degree l, and to find any edge with given degrees {k, l}, when the star vertex is selected with replacement, independently and uniformly at random. A modified construction of the classic Erd?s-Rényi (ER) graph is given, wherein a random number of edges are placed independently and uniformly at random on the set of vertices. Three results are given: i) although the modified ER graph is a multigraph, the fraction of multiple edges is exponentially small in the edge probability, ii) the random degrees under the classic ER and modified ER constructions have equal means and the variances have a ratio near one for small edge probability, and iii) the probability of a star sample containing a vertex with a target degree is approximately equal to a simple combinatorial quantity under the modified ER construction. This quantity is our primary approximation of the performance under star sampling, requiring knowledge only of certain natural summary statistics for the graph. Numerical results comparing the actual and approximate number of star samples required to find vertices and edges with target degrees are given for both synthetic ER graphs and for real-world graphs from the SNAP repository.
机译:大图的(单个)星样本由顶点,其邻居和每个邻居的程度组成。估算器被导出,用于查找具有给定程度L所需的任何顶点所需的预期的星形样本数,并在随机替换,独立地和均匀地选择星顶,当明星顶点选择术时{k,l}的任何边缘。给出了经典ERD的修改结构,其中给出了曲线图的修改结构,其中随机的边缘在该组顶点上随机地独立地放置并且均匀地放置。给出了三个结果:i)虽然修饰的ER图是多层的,但是多个边缘的分数在边缘概率下指数较小,ii)经典的ER和修改的ER结构下的随机度具有相等的方式,差异具有相等的方法,并且差异具有相等的方式和变差对于小边缘概率而接近的比率,并且III)含有顶点的星形样品的概率近似等于修改的ER构造下的简单组合量。此数量是我们在星形采样下性能的主要近似,只需要对图表的某些自然汇总统计数据知识。比较发现顶点和边缘与目标所需的程度明星样品的实际和近似数计算结果都是使用合成ER图和从SNAP库真实世界的图表。

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