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Small worlds in multi-channel wireless networks: An analytical approach

机译:多通道无线网络中的小世界:一种分析方法

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By utilizing the multi-channel technology and small world properties, the average path length of a wireless network can be reduced drastically, leading to a significant improvement of network performance. It has been proven that, by upgrading a fraction of nodes into the high-level nodes with multi interfaces and higher transmission powers, small world effect can be introduced owing to the shortcuts created by the high-level nodes. However, it is difficult to control the small world properties in wireless networks by adjusting the rewiring probability. This work, in particular, investigates the relationship between the network parameters and the equivalent rewiring probability by building an analytical model. Two parameters, communication range multiplier γ and upgrading ratio ρ, are defined to describe this relationship concisely. Simulation results indicate that when γ and ρ are within the optimal ranges, compared with single interface, performance of the double-channel wireless network can be improved by 90%, without introducing any additional mechanisms.
机译:通过利用多通道技术和小巧的世界特性,可以极大地减少无线网络的平均路径长度,从而显着改善网络性能。已经证明,通过将一部分节点升级为具有多接口和更高传输功率的高级节点,由于高级节点创建的快捷方式,可以引入较小的世界效应。但是,难以通过调整重新布线概率来控制无线网络中的小世界特性。这项工作尤其是通过建立分析模型来研究网络参数与等效重布线概率之间的关系。定义了两个参数,通信距离乘数γ和升级率ρ,以简洁地描述这种关系。仿真结果表明,当γ和ρ在最佳范围内时,与单接口相比,双通道无线网络的性能可以提高90%,而无需引入任何其他机制。

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