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MMSMAC: A Multi-mode Medium Access Control Protocol for Wireless Sensor Networks with Latency and Energy-Awareness

机译:MMSMAC:具有延迟和能量意识的无线传感器网络的多模式介质访问控制协议

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摘要

In this paper, we propose a new medium access control (MAC) protocol for wireless sensor networks called MMSMAC (multi-mode sensor MAC protocol), which operates according to the application requirements and traffic load, in three main modes: synchronous, asynchronous, and hybrid. In the synchronous mode, MMSMAC organizes the sensor nodes under even and odd clusters. Each sensor node has its own active/ sleep and send/ receive periods according to its cluster identifier, which ensures better load balancing among nodes. In the asynchronous mode, sensor nodes communicate freely without the utilization of even and odd clusters. We propose a mechanism to wake up the destination node and minimize the overhead. In this mode, we propose another mechanism to circumvent the problem of hidden host. In the hybrid mode, the features of asynchronous and asynchronous modes are combined. Our simulation results and analysis show that each of the MMSMAC modes shows convincing performance gains and outperforms B-MAC and Hybrid CSMA/TDMA protocols.
机译:在本文中,我们提出了一种用于MMSMAC(多模式传感器MAC协议)的无线传感器网络的新型媒体访问控制(MAC)协议,其根据应用要求和流量负载运行三种主要模式:同步,异步,和杂交。在同步模式下,MMSMAC在偶数和奇数集群下组织传感器节点。每个传感器节点都有自己的主动/睡眠和根据其群集标识符发送/接收句点,这确保了节点之间的更好负载平衡。在异步模式中,传感器节点在不利用偶数和奇数群集的情况下自由进行通信。我们提出了一种机制来唤醒目的地节点并最小化开销。在这种模式下,我们提出了另一种机制来规避隐藏主体的问题。在混合模式中,组合异步和异步模式的特征。我们的仿真结果和分析表明,每个MMSMAC模式都显示了令人信服的性能增益和优于B-MAC和混合CSMA / TDMA协议。

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