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An optimal network coding based backpressure routing approach for massive IoT network

机译:基于大型物联网网络的基于最优网络编码的背压路由方法

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In order to mitigate the power consumption issue for the sensor's nodes, an efficient power optimized routing protocol is needed. Therefore, this paper proposes a network coding backpressure routing (NCBPR) routing scheme for a large-scale Internet of Things (IoT) networks, which exploits the backpressure algorithm in order to divert packets flow. In the network, the packets are flowing from the highly congested node to low congested node, which helps to balance the load and optimized the fair use of the battery power of all the participating nodes. It divides the network into the small clusters, where the selection of clusters head depends upon an additional parameter of battery power apart from other optimum path parameters. It also employs an efficient data aggregation mechanism, which improves the throughput of the network by eliminating redundant packets. The network has been designed by considering 300 nodes in a network and the results have been drawn in terms of network throughput, packet delivery ratio and energy consumption. The results are presented in comparison with conventional well-known information-fusion-based role assignment (InFRA) and data routing for in-network aggregation (DRINA) routing schemes. The results prove that the proposed NCBPR scheme delivers significant improvement, such as throughput which increased by 21.38 and 12.13%, packet delivery ratio improved by 24.73 and 11.38%, and sensors node's energy consumption is decreased by 61.46 and 44.35% as compared to conventional InFRA and DRINA schemes, respectively.
机译:为了减轻传感器节点的功耗问题,需要一种有效的功率优化路由协议。因此,本文提出了一种网络编码背部路由(NCBPR)路由方案,用于大规模的物联网(物联网)网络,其利用背压算法以便转移分组流。在网络中,数据包从高度拥塞的节点流到低拥挤的节点,这有助于平衡负载并优化所有参与节点的电池电量的公平使用。它将网络划分为小簇,其中簇头的选择取决于与其他最佳路径参数相比的电池功率的附加参数。它还采用了一种有效的数据聚合机制,通过消除冗余数据包来提高网络的吞吐量。通过考虑网络中的300个节点,在网络吞吐量,分组传递比率和能量消耗方面绘制了该网络。与传统的众所周知的信息融合的角色分配(INFRA)和用于网络内聚合(DRINA)路由方案的数据路由来呈现结果。结果证明,拟议的NCBPR方案具有显着的改善,例如增加21.38%和12.13%,分组输送比率提高24.73和11.38%,而传感器节点的能量消耗与常规红外线相比减少了61.46和44.35%和Drina计划分别。

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