An Energy-Efficient Hash-Based MAC Protocol for LSN

I. Villordo-Jiménez, R. Menchaca-Méndez, M. E. Rivero-Angeles, Noé Torres-Cruz
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引用次数: 3

Abstract

In this paper, we introduce H-MAC (Hash-based Medium Access Protocol), a collision-free, energy-efficient MAC protocol designed for Linear Sensor Networks (LSN) with applications to the Internet-of-Things (IoT), In our proposal, the LSN is divided in grades composed of nodes located at the same hop-distance to the sink. Nodes in the same grade follow a synchronized duty cycle to transit from the different operation modes (transmission, reception, sleeping). In order to transmit packets from one grade to the next, nodes use pipeline scheduling to coordinate transmissions between adjacent grades. During a transmission slot, H-MAC employs hash functions to implement a distributed election whose winner can access to the channel in an interference-free fashion. Extensive simulation results show that H - MAC outperforms state of the art proposals in terms of throughput, source-to-sink packet delay, packet loss probability and energy consumption. This is particularly true in scenarios where the LSN has from medium to high node density, which is a common condition in the context of the IoT.
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LSN的高效哈希MAC协议
在本文中,我们介绍了H-MAC(基于哈希的介质访问协议),这是一种无碰撞,节能的MAC协议,专为线性传感器网络(LSN)设计,并应用于物联网(IoT)。在我们的建议中,LSN由位于与接收器相同跳距的节点组成的等级。同一等级的节点遵循同步的占空比从不同的运行模式(发送、接收、睡眠)传输。为了将数据包从一个等级传输到下一个等级,节点使用管道调度来协调相邻等级之间的传输。在一个传输时隙中,H-MAC采用哈希函数实现分布式选举,其获胜者可以以无干扰的方式访问信道。大量的仿真结果表明,H - MAC在吞吐量、源到接收包延迟、丢包概率和能耗方面都优于目前的方案。在LSN节点密度从中等到高的情况下尤其如此,这是物联网环境中的常见情况。
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