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An Adaptive Schedule Medium Access Control for Wireless Sensor Networks

机译:无线传感器网络的自适应时间表介质访问控制

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Many Media Access Control (MAC) protocols for wireless sensor networks (WSNs) such as Sensor MAC (S-MAC) and Carrier Sense Multiple Access with Minimum Preamble Sampling (CSMA-MPS) exploit listen/sleep cycles to conserve energy. The cycles of nodes influence the network performances such as energy efficiency, packet latency and throughput in WSNs. In this paper, an Adaptive Schedule Medium Access Control (AS-MAC) for WSNs is presented. AS-MAC introduces the adaptation of the cycles in MAC layer to the data traffic. The effect of the protocol is that it can decrease the latency, improve the throughput and energy efficiency when traffic is dynamic. We also compare AS-MAC with S-MAC and CSMA-MPS through simulations and the results show it has better performances than the former protocols.
机译:许多用于无线传感器网络(WSN)的媒体访问控制(MAC)协议,例如传感器MAC(S-MAC)和载波侦听具有最小前导采样(CSMA-MPS)利用的多次访问权限,以节省能量。节点的周期会影响网络性能,例如WSN中的能效,分组延迟和吞吐量。本文介绍了用于WSN的自适应调度介质访问控制(AS-MAC)。 AS-MAC介绍了MAC层中的周期的适应数据流量。协议的效果是它可以降低延迟,在交通动态时提高吞吐量和能量效率。我们还通过模拟将AS-Mac和CSMA-MPS与S-Mac和CSMA-MPS进行比较,结果表明它具有比前一个协议更好的表现。

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