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A geographic routing approach for IPv6 in large-scale low-power and lossy networks

机译:大规模低功耗有损网络中IPv6的地理路由方法

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In this paper, we propose GeoRank, a geographic routing approach for the IPv6-enabled large-scale low-power and lossy networks. We discuss the main drawbacks of the RPL (IPv6 Routing Protocol for Low-Power and Lossy Networks) for P2P (point-to-point) communication in large-scale 6LoWPAN networks. Then, we address such drawbacks by proposing a routing protocol, named GeoRank, which integrates RPL protocol with the position-based routing protocol GOAFR (Greedy Other Adaptive Face Routing). The results obtained with simulations show that GeoRank finds shorter routes than RPL in high link density conditions and than GOAFR in low link density conditions. Thus, GeoRank shows to be adaptive to variable link densities found in large-scale networks. Further, GeoRank avoids the use of DAO (Destination Advertisement Object) control messages required in RPL, while being more scalable in terms of memory usage than storing-mode RPL. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在本文中,我们提出了GeoRank,这是一种支持IPv6的大规模低功耗有损网络的地理路由方法。我们讨论了在大型6LoWPAN网络中进行P2P(点对点)通信的RPL(低功耗有损网络的IPv6路由协议)的主要缺点。然后,我们通过提出名为GeoRank的路由协议来解决此类缺陷,该路由协议将RPL协议与基于位置的路由协议GOAFR(Greedy Other Adaptive Face Routing)集成在一起。通过仿真获得的结果表明,在高链路密度条件下,GeoRank的路由要比RPL短,而在低链路密度条件下的路由要比GOAFR短。因此,GeoRank显示出可适应大规模网络中发现的可变链路密度。此外,GeoRank避免了使用RPL中要求的DAO(目标广告对象)控制消息,同时在内存使用方面比存储模式RPL具有更高的可伸缩性。 (C)2015 Elsevier Ltd.保留所有权利。

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