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Joint Topology Construction and Hybrid Routing Strategy on Load Balancing for Bluetooth Low Energy Networks

机译:蓝牙低能量网络负荷平衡的联合拓扑结构和混合路由策略

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摘要

This study proposes a multiple mesh-ring (MMR) topology construction with a hybrid routing strategy for Bluetooth low energy (BLE) networks. To achieve the load-balancing network, three design phases, including leader selection, role decision, and scatternet formation, are executed to generate even MMR configurations. First, each master discovers its adjacent slaves to determine a coordinator. Second, the coordinator computes the desired number of piconets with even scatternet link connectivity and distributes the scatternet connection information for each master. Finally, each designated master connects with its associated nodes, including slaves, intrabridges, and interbridges to create the link balanced MMR scatternet. To jointly design an energy-efficient routing protocol for the MMR topology, a hybrid routing strategy is deployed to perform the shortest path routing inside the mesh-ring subnet, and self-routing through different mesh-ring layers. Simulation results demonstrate that the balanced MMR topology leads to a significant gain in terms of network transmission performance and network lifetime when compared to the conventional dual-ring tree (DRT) and cluster-based mesh (CBM) approaches for BLE networks.
机译:本研究提出了一种多网环(MMR)拓扑结构,具有用于蓝牙低能量(BLE)网络的混合路由策略。为了实现负载平衡网络,执行三个设计阶段,包括领导者选择,角色决策和散射网形成,以生成即使MMR配置。首先,每个主站都发现其相邻的从站以确定协调器。其次,协调器使用甚至散射网链路连接计算所需数量的微微网,并分配​​每个主站的散射连接信息。最后,每个指定的主站与其相关的节点连接,包括从站,interAnjridges和杂交码,以创建链路平衡MMR ScatterNet。为了共同设计MMR拓扑的节能路由协议,部署了混合路由策略,以在网环子网内部执行最短路径路径,并通过不同的网环图层自由路由。仿真结果表明,与传统的双环树(DRT)和基于群集的网格(CBM)接近BLE网络的方法相比,平衡MMR拓扑在网络传输性能和网络寿命方面导致了显着的增益。

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