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Energy Efficient Multichannel MAC Protocol for High Traffic Applications in Heterogeneous Wireless Sensor Networks

机译:用于异构无线传感器网络的高流量应用的节能多声道MAC协议

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Background: Wireless Sensor Networks (WSNs) have become an important part in recent years with a wide range of applications from low traffic to high traffic applications (e.g. Multimedia, VoIP, IOT, IOE). These applications require collection and transmission of the high amount of data in a timely manner. In WSNs, sensors are randomly deployed in ad hoc fashion and as per application requirement are inactive for a long time and quickly activate when any event is detected. Designing a good MAC is important to optimize the energy at the data link layer of the communication model. Proposed protocol EE-MMAC is an energy-efficient multichannel MAC for high traffic applications. Methods: The primary objective of EE-MMAC is to cut energy consumption at the data link layer based on following multi-channel attributes: Idle listening, elimination of collisions, overhearing and reducing the control packet overhead. EE-MMAC uses periodically sleep technique in the multi-channel environment based on the directional antenna, which is different from the traditional IEEE 802.11 MAC and IEEE 802.15.4. When a node is transmitting data, during that time other nodes must be in sleep mode motivated by S-MAC, PAMAS. Nodes must exchange control packets on CC (control channel) to choose DC (data channel) for communication and to decide the beam direction of the flow. Results: The proposed algorithm results show that the EE-MMAC achieves significant energy gains (30% to 45% less than comparable to IEEE 802.11, and MMAC) based on mainly energy efficiency, PDR (packet delivery ratio) and throughput.
机译:背景:无线传感器网络(WSNS)已成为近年来的一个重要组成部分,具有从低流量到高流量应用(例如多媒体,VoIP,IOT,IOE)的广泛应用程序。这些应用需要及时收集和传输大量数据。在WSN中,传感器以AD Hoc时尚随机部署,并且根据申请要求长时间无效,并且在检测到任何事件时快速激活。设计良好的MAC对于优化通信模型的数据链路层处的能量非常重要。建议的协议EE-MMAC是高流量应用的节能多通道MAC。方法:EE-MMAC的主要目标是基于以下多通道属性的数据链路层的能耗:空闲收听,消除冲突,曝光和减少控制分组开销。 EE-MMAC在基于定向天线的多通道环境中使用定期睡眠技术,该方向天线与传统的IEEE 802.11 MAC和IEEE 802.15.4不同。当节点正在发送数据时,在此期间,其他节点必须处于S-MAC,PAMAS的睡眠模式。节点必须在CC(控制信道)上交换控制分组以选择用于通信的DC(数据通道)并确定流程的波束方向。结果:该算法结果表明,基于主要是能效,PDR(分组输送比率)和吞吐量,EE-MMAC实现了显着的能量增益(比IEEE 802.11和MMAC的比较少30%至45%。

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