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Load balanced routing for low power and lossy networks

机译:用于低功耗和有损网络的负载均衡路由

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The RPL routing protocol published in RFC 6550 was designed for efficient and reliable data collection in low-power and lossy networks. Specifically, it constructs a Destination Oriented Directed Acyclic Graph (DODAG) for data forwarding. However, due to the uneven deployment of sensor nodes in large areas, and the heterogeneous traffic patterns in the network, some sensor nodes may have much heavier workload in terms of packets forwarded than others. Such unbalanced workload distribution will result in these sensor nodes quickly exhausting their energy, and therefore shorten the overall network lifetime. In this paper, we propose a load balanced routing protocol based on the RPL protocol, named LB-RPL, to achieve balanced workload distribution in the network. Targeted at the low-power and lossy network environments, LB-RPL detects workload imbalance in a distributed and non-intrusive fashion. In addition, it optimizes the data forwarding path by jointly considering both workload distribution and link-layer communication qualities. We demonstrate the performance superiority of our LB-RPL protocol over original RPL through extensive simulations.
机译:RFC 6550中发布的RPL路由协议旨在在低功耗和有损耗的网络中高效,可靠地收集数据。具体来说,它构造了用于数据转发的面向目的地的有向无环图(DODAG)。但是,由于传感器节点在大区域中的部署不均匀以及网络中的异构流量模式,就转发的数据包而言,某些传感器节点的工作量可能比其他传感器节点大。这种不平衡的工作负载分配将导致这些传感器节点快速耗尽其能量,从而缩短整个网络的寿命。在本文中,我们提出了一种基于RPL协议的负载均衡路由协议,称为LB-RPL,以实现网络中的均衡工作负载分配。 LB-RPL针对低功耗和有损网络环境,以分布式和非侵入式的方式检测工作负载不平衡。此外,它通过共同考虑工作负载分配和链路层通信质量来优化数据转发路径。通过广泛的仿真,我们证明了LB-RPL协议相对于原始RPL的性能优越性。

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