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Energy and Delay Aware Data Aggregation in Routing Protocol for Internet of Things

机译:能量和延迟意识到的路由协议中的互联网

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摘要

Energy conservation is one of the most critical problems in Internet of Things (IoT). It can be achieved in several ways, one of which is to select the optimal route for data transfer. IPv6 Routing Protocol for Low Power and Lossy Networks (RPL) is a standardized routing protocol for IoT. The RPL changes its path frequently while transmitting the data from source to the destination, due to high data traffic in dense networks. Hence, it creates data traffic across the nodes in the networks. To solve this issue, we propose Energy and Delay Aware Data aggregation in Routing Protocol (EDADA-RPL) for IoT. It has two processes, namely parent selection and data aggregation. The process of parent selection uses routing metric residual energy (RER) to choose the best possible parent for data transmission. The data aggregation process uses the compressed sensing (CS) theory in the parent node to combine data packets from the child nodes. Finally, the aggregated data transmits from a downward parent to the sink. The sink node collects all the aggregated data and it performs the reconstruction operation to get the original data of the participant node. The simulation is carried out using the Contiki COOJA simulator. EDADA-RPL’s performance is compared to RPL and LA-RPL. The EDADA-RPL offers good performance in terms of network lifetime, delay, and packet delivery ratio.
机译:节能是东西互联网上最关键的问题之一(IOT)。它可以通过多种方式实现,其中一个是选择数据传输的最佳路线。低功耗和有损网络(RPL)的IPv6路由协议是IOT的标准化路由协议。由于密集网络中的高数据流量,RPL在从源传输到目的地的时,rpl经常改变其路径。因此,它在网络中的节点上创建数据流量。要解决此问题,我们提出了IOT路由协议(Edada-RPL)中的能量和延迟感知数据聚合。它有两个进程,即父选择和数据聚合。父选择的过程使用路由度量剩余能量(RER)来选择最佳的数据传输父级。数据聚合过程使用父节点中的压缩感测(CS)理论来组合来自子节点的数据包。最后,聚合数据从向下父级发送到接收器。汇聚节点收集所有聚合数据,它执行重建操作以获取参与者节点的原始数据。使用Contiki Cooja模拟器进行仿真。 Edada-RPL的表现与RPL和La-RPL进行了比较。 Edada-RPL在网络生命周期,延迟和数据包交付比率方面提供了良好的性能。

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