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An adaptive interference-aware and traffic-aware channel assignment strategy for backhaul networks

机译:回程网络的自适应干扰感知和流量感知信道分配策略

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The transformation of traditional networks is being done by incorporating billions of daily life devices to provide service centric facilities. With such transformation, the major traffic load will be shifted toward the backhaul networks, for which guaranteed bandwidth and low latency are the basic requirements. In order to meet varying and dynamic requirements of each service, the development of a traffic aware network is unavoidable. For achieving last mile connectivity, wireless mesh is considered among the best of the backhaul networks. Additionally, classical single radio mesh routers restrict the whole network on a single channel and hence the full potential of available multiple channels is not achieved. Mesh routers plugged with multiple radios allow parallel transmissions and increase the capacity of the whole network. To utilize network resources more efficiently, the key issue of channel assignment for wireless mesh networks is explored by incorporating the concept of time-based traffic in a distributed environment. This paper discusses the problem of assigning a limited number of channels to a large number of radios while keeping in view the restrictions involved in maintaining a minimal level of interference and preservation of network topology. Bayesian estimation approach is used to gather knowledge from surroundings to determine the high-interfered region and hence a distributed solution is proposed where mesh routers can find a more suitable alternative channel for respective region. The proposed algorithm is evaluated through traces on multiple flows, collected from simulations. Results show that the proposed algorithm performed better than existing ones in the presence of interference.
机译:通过合并数十亿个日常生活设备以提供以服务为中心的设施,来完成传统网络的转型。通过这样的转换,主要的业务负载将转移到回程网络上,为此,保证带宽和低延迟是基本要求。为了满足每种服务的变化和动态的要求,不可避免地要开发业务感知网络。为了实现最后一英里的连接,无线网状网络被认为是最佳的回程网络之一。另外,传统的单个无线网状路由器将整个网络限制在单个通道上,因此无法实现可用多个通道的全部潜力。装有多个无线电的网状路由器允许并行传输并增加整个网络的容量。为了更有效地利用网络资源,通过在分布式环境中纳入基于时间的流量概念,探索了无线网状网络的信道分配的关键问题。本文讨论了将有限数量的信道分配给大量无线电的问题,同时考虑了保持最小干扰水平和保持网络拓扑结构所涉及的限制。贝叶斯估计方法用于从周围环境中收集知识以确定高干扰区域,因此提出了一种分布式解决方案,其中网状路由器可以为各个区域找到更合适的替代信道。通过从模拟中收集的多条流的轨迹评估所提出的算法。结果表明,在存在干扰的情况下,该算法的性能优于现有算法。

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