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An Energy Efficient Cross-Layer Network Operation Model for IEEE 802.15.4-Based Mobile Wireless Sensor Networks

机译:基于IEEE 802.15.4的移动无线传感器网络的高效节能跨层网络操作模型

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摘要

IEEE 802.15.4 mobile wireless sensor networks (MWSNs) have been investigated in literature. One major finding is that these networks suffer from control packet overhead and delivery ratio degradation. This increases the network’s energy consumption. This paper introduces a cross-layer operation model that can improve the energy consumption and system throughput of IEEE 802.15.4 MWSNs. The proposed model integrates four layers in the network operation: 1) application (node location); 2) network (routing); 3) medium access control (MAC); and 4) physical layers. The location of the mobile nodes is embedded in the routing operation after the route discovery process. The location information is then utilized by the MAC layer transmission power control to adjust the transmission range of the node. This is used to minimize the power utilized by the network interface to reduce the energy consumption of the node(s). The model employs a mechanism to minimize the neighbor discovery broadcasts to the active routes only. Reducing control packet broadcasts between the nodes reduces the network’s consumed energy. It also decreases the occupation period of the wireless channel. The model operation leads the network to consume less energy while maintaining the network packet delivery ratio. To the best of our knowledge, the presented operational model with its simplicity has never been introduced. Through simulation-based evaluations, the proposed model outperforms the conventional operation of IEEE 802.15.4-based network and the energy efficient and QoS aware multipath routing protocol in terms of energy consumption by roughly 10%, twice less control packet overhead, on-par end-to-end delays and comparative packet delivery ratios.
机译:在文献中已经对IEEE 802.15.4移动无线传感器网络(MWSN)进行了研究。一个主要发现是这些网络遭受控制分组开销和传送比率降低的困扰。这会增加网络的能耗。本文介绍了可以改善IEEE 802.15.4 MWSN的能耗和系统吞吐量的跨层操作模型。所提出的模型在网络操作中集成了四层:1)应用程序(节点位置); 2)网络(路由); 3)媒体访问控制(MAC);和4)物理层。在路由发现过程之后,将移动节点的位置嵌入到路由操作中。然后,MAC层传输功率控制将位置信息用于调整节点的传输范围。这用于最小化网络接口使用的功率,以减少节点的能耗。该模型采用一种机制来最大程度地减少仅对活动路由的邻居发现广播。减少节点之间的控制包广播,可以减少网络的能耗。它还减少了无线信道的占用时间。模型操作导致网络消耗较少的能量,同时保持网络数据包的传输比率。据我们所知,从未介绍过这种简单的操作模型。通过基于仿真的评估,所提出的模型在能耗方面优于基于IEEE 802.15.4的网络和基于能源效率和QoS的多路径路由协议的常规操作,其能耗大约降低了10%,控制数据包开销减少了两倍端到端延迟和可比较的数据包传递比率。

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