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Advanced Energy Consumption Strategy in Mobility Support Enhancement for RPL with Multiple Sinks

机译:带有多个接收器的RPL的移动支持增强中的高级能耗策略

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In the environment of the internet of things decentralized type of network is utilized, where nodes communication takes place and data is transferred to the internet via the base station. The communication routing is applied using RPL in IoT. For LLNs (Low Power and Lossy Network) it is a systematic routing protocol. As static topologies, RPL was initially designed, for a lot of uses mobility assistance continues to be a significant necessity of LLNs. Additionally, the component of the applications mobility support for many sink nodes rather compared to a sink node. This's because of the point that in an information assortment wireless sensor networking (WSN), just a sink very easily results to a much faster power depletion, a lot more package loss, maximum latency, and smaller sized community range. Deploying several sinks in the networking is able to assist you to resolve the issues. This particular paper concentrates on dealing with mobility assistance in RPL with several sinks. A resolving response to this particular issue is deploying several sinks in wireless sensor networking. In direction to enhance the wireless sensor network performance overall in phrases of Packet loss, Lifetimes, every sensor node communicates just with the closest sink. When the sinks are actually distributed more than places that are diverse, this could lead to an average decrease in the number of hops and hence the growth in reduction and functionality of the ingested energy.
机译:在物联网的环境中,使用了分散型网络,在该网络中进行节点通信,并通过基站将数据传输到互联网。在IoT中使用RPL应用通信路由。对于LLN(低功率有损网络),它是一种系统的路由协议。作为静态拓扑,RPL最初是为很多用途而设计的,移动辅助仍然是LLN的重要需求。此外,应用程序移动性的组件支持许多接收器节点,而不是与接收器节点相比。这是因为这样的观点:在信息分类无线传感器网络(WSN)中,仅接收器很容易导致更快的功率消耗,更多的封装损耗,最大的延迟以及更小的社区范围。在网络中部署多个接收器可以帮助您解决问题。这篇特别的论文集中在处理带有多个接收器的RPL中的移动性帮助上。解决此特定问题的方法是在无线传感器网络中部署多个接收器。为了从数据包丢失,生命周期的角度提高无线传感器网络的整体性能,每个传感器节点都仅与最近的接收器进行通信。当汇的实际分布比分散的地点多时,这可能导致啤酒花数量平均减少,因此摄入能量的减少和功能性增加。

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