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Cross layer modeling of contention-based MAC and deterministic routing protocols in multi-hop WSNs

机译:多跳WSN中基于竞争的MAC和确定性路由协议的跨层建模

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Analytical studies of Medium Access Control (MAC) layer protocols can be used to improve the performance of multi-hop Wireless Sensor Networks (WSNs) in the presence of hidden stations. The selected MAC layer protocol should conform to the distributed nature of the WSNs. The IEEE 802.11 MAC layer with Distributed Coordination Function (DCF) is well suited to WSNs. Analytical studies of IEEE 802.11 DCF in the presence of hidden stations in multi-hop WSNs is very crucial as it is widely used. In this paper, an analytical model considering hidden stations in a multi-hop WSN has been developed to study the cross layer performance of IEEE 802.11 DCF under a deterministic routing protocol. Using this model, theoretically measurements like probability of collision, medium access delay, end to end success probability, and end to end delay of each sensor node in the network can be achieved. Accuracy of the analytical model has been verified with simulation results. The model can be used to determine whether a specific WSN can achieve the expected performance.
机译:在存在隐藏站的情况下,可以使用媒体访问控制(MAC)层协议的分析研究来提高多跳无线传感器网络(WSN)的性能。所选的MAC层协议应符合WSN的分布式性质。具有分布式协调功能(DCF)的IEEE 802.11 MAC层非常适合WSN。在多跳WSN中存在隐藏站的情况下,对IEEE 802.11 DCF的分析研究非常关键,因为它已被广泛使用。在本文中,已经开发了一种考虑多跳WSN中隐藏站点的分析模型,以研究确定性路由协议下IEEE 802.11 DCF的跨层性能。使用该模型,理论上可以实现网络中每个传感器节点的碰撞概率,介质访问延迟,端到端成功概率以及端到端延迟等测量。仿真结果验证了分析模型的准确性。该模型可用于确定特定的WSN是否可以达到预期的性能。

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