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An optimal cluster formation based energy efficient dynamic scheduling hybrid MAC protocol for heavy traffic load in wireless sensor networks

机译:无线传感器网络中基于优化集群形成的高能效动态调度混合MAC协议

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This article proposes an Energy Efficient Dynamic Scheduling Hybrid MAC Protocol (EDS-MAC) for Traffic Adaptive Wireless Sensor Networks. The proposed approach consists of two stages. (i) cluster formation, and (ii) data transmission. In the first stage, a variable step size firefly algorithm (VSSFFA) is proposed for generating energy-aware clusters by optimal selection of cluster heads. The VSSFFA reduces the cost of locating optimal position for the head nodes in a cluster. Additionally, we proposed the VSSFFA-based approach within the cluster rather than base station, which makes it a semi-distributed method. The selection criteria of the objective function are based on the residual energy, intra-cluster distance, node degree and head count of the probable cluster heads. Data communication is done using data transmission stage, which reduces the latency, delay, and control overhead. Compared to IH-MAC, EDS-MAC reduces the size of control packet by introducing short node address (1 byte instead of 8 bytes in IH-MAC). By enabling lower duty cycle operation and by performing efficient clustering, it reduces overhearing and reduces the overall latency experienced by the sensor network. Hence, introduction of EDS-MAC protocol in WSN can help the users with prolonged network life span and minimize the energy and overhead utilization of the overall network. The efficiency of the proposed MAC protocol has been analyzed using the NS-2 simulator. WSN employing EDS-MAC is compared with IH-MAC and is found to experience 50% reduction in overall energy consumption and 72% reduction in overall delay experienced by the network. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文提出了一种针对流量自适应无线传感器网络的节能高效动态调度混合MAC协议(EDS-MAC)。提议的方法包括两个阶段。 (i)集群形成,和(ii)数据传输。在第一阶段,提出了一种可变步长萤火虫算法(VSSFFA),用于通过最佳选择簇头来生成能量感知簇。 VSSFFA降低了为群集中的头节点定位最佳位置的成本。此外,我们在集群而不是基站中提出了基于VSSFFA的方法,这使其成为一种半分布式方法。目标函数的选择标准基于残差能量,簇内距离,节点度和可能的簇头的头数。数据通信使用数据传输级完成,从而减少了等待时间,延迟和控制开销。与IH-MAC相比,EDS-MAC通过引入短节点地址(在IH-MAC中为1个字节而不是8个字节)来减小控制包的大小。通过启用较低占空比的操作并执行有效的群集,它可以减少偷听并减少传感器网络经历的总体延迟。因此,在WSN中引入EDS-MAC协议可以帮助用户延长网络寿命,并最大程度地降低整个网络的能源和开销利用率。已使用NS-2仿真器分析了提出的MAC协议的效率。将采用EDS-MAC的WSN与IH-MAC进行比较,发现网络的总能耗降低了50%,总延迟降低了72%。 (C)2018 Elsevier Ltd.保留所有权利。

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