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Accelerating networks: Effects of preferential connections

机译:加速网络:优先连接的影响

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摘要

Networks are commonly observed structures in complex systems with interacting and interdependent parts that self-organize. For nonlinearly growing networks, when the total number of connections increases faster than the total number of nodes, the network is said to accelerate. We propose a systematic model for the dynamics of growing networks represented by distribution kinetics equations. We define the nodal-linkage distribution, construct a population dynamics equation based on the association-dissociation process, and perform the moment calculations to describe the dynamics of such networks. For nondirectional networks with finite numbers of nodes and connections, the moments are the total number of nodes, the total number of connections, and the degree (the average number of connections per node), represented by the average moment. Size independent rate coefficients yield an exponential network describing the network without preferential attachment, and size dependent rate coefficients produce a power law network with preferential attachment. The model quantitatively describes accelerating network growth data for a supercomputer (Earth Simulator), for regulatory gene networks, and for the Internet.
机译:网络是复杂系统中通常观察到的结构,具有相互作用且相互依存的自组织部分。对于非线性增长的网络,当连接总数的增加速度快于节点总数的速度时,则表示网络正在加速。我们为分布动力学方程表示的增长网络的动力学提出了一个系统模型。我们定义节点链接分布,基于关联-解离过程构建种群动力学方程,并进行矩量计算以描述此类网络的动力学。对于具有有限数量的节点和连接的无向网络,力矩是节点的总数,连接的总数以及度数(每个节点的平均连接数),用平均力矩表示。大小独立的速率系数产生一个描述网络的指数网络,没有优先权,而大小相关的速率系数产生一个幂律网络,具有优先权。该模型定量描述了超级计算机(地球模拟器),调控基因网络和Internet的加速网络增长数据。

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