首页> 外文期刊>International Journal of Distributed Sensor Networks >Network topology optimization by turning non-scale-free networks into scale-free networks using nonlinear preferential rewiring method:
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Network topology optimization by turning non-scale-free networks into scale-free networks using nonlinear preferential rewiring method:

机译:通过使用非线性优先级重新布线方法将非无标度网络转换为无标度网络来优化网络拓扑:

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In practical application, the generation and evolution of many real networks always do not follow rigorous mathematical model, making network topology optimization a great challenge in the field of complex networks. In this research, we optimize the topology of non-scale-free networks by turning it into scale-free networks using a nonlinear preferential rewiring method. For different kinds of original networks generated by Watts and Strogatz model, we systematically demonstrate the optimization process and the modified networks to verify the performance of nonlinear preferential rewiring. We conduct further researches to explore the effect of nonlinear preferential rewiring’s parameters on performance. Simulation results show that various non-scale-free networks with different network topologies generated by WS model, including random networks and various networks between regular and random, are turned into scale-free networks perfectly by nonlinear preferential rewiring method.
机译:在实际应用中,许多真实网络的生成和演化总是不遵循严格的数学模型,这使得网络拓扑优化成为复杂网络领域的巨大挑战。在这项研究中,我们通过使用非线性优先级重新布线方法将非标度网络变为无标度网络来优化其拓扑。针对由Watts和Strogatz模型生成的各种原始网络,我们系统地演示了优化过程和改进的网络,以验证非线性优先重布线的性能。我们进行了进一步的研究,以探索非线性优先重布线参数对性能的影响。仿真结果表明,通过非线性优先重布线法,WS模型生成的各种具有网络拓扑结构的无标度网络,包括随机网络和介于规则和随机之间的各种网络,均完美地变为了无标度网络。

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