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An energy-efficient and cluster-parent based RPL with power-level refinement for low-power and lossy networks

机译:具有能源效率且基于集群父级的RPL,具有针对低功率和有损网络的功率级优化

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Low-Power and Lossy Networks (LLNs) have emerged as a new and attractive paradigm. The limited resources and dynamic environment have driven research towards finding an energy-efficient, reliable, stable, and scalable routing design. IETF has standardized the IPv6 Routing Protocol for Low-Power and Lossy Networks (RPL) to provide interoperability for LLNs. This paper proposes a hybrid, energy-efficient cluster-parent based RPL routing protocol, called HECRPL, with the aim of achieving energy-efficiency and reliability simultaneously. HECRPL incorporates the following five major features to effectively prolong the lifetime of the network, while achieving a high reliability and fairness for the network: 1) a top-down approach for optimal cluster-parent-set (CPS) selection to minimize the energy depletion of the network and leverage path diversity, while achieving the global goal, 2) an overhearing-based coordination among nodes in a CPS to avoid duplicate transmissions, 3) the priority in a CPS is based on a hybrid of residual energy and the lossy conditions of wireless channels, 4) an efficient loss recovery scheme for the detection and retransmission of the lost data packets, and 5) the transmission power is refined to increase the network capacity (increase spatial reuse) and further reserve energy. Extensive simulation results demonstrate that our proposed approach can effectively prolong the lifetime of the network and achieve more reliable data delivery compared to the benchmark, i.e., RPL, across a wide range of scenarios. (C) 2016 Elsevier B.V. All rights reserved.
机译:低功耗有损网络(LLN)已经成为一种新的有吸引力的范例。有限的资源和动态环境推动了对寻找节能,可靠,稳定和可扩展的路由设计的研究。 IETF已标准化了低功耗有损网络(RPL)的IPv6路由协议,以提供LLN的互操作性。本文提出了一种混合的,基于集群的高效节能的基于父母的RPL路由协议,称为HECRPL,目的是同时实现能源效率和可靠性。 HECRPL整合了以下五个主要功能,可有效延长网络的寿命,同时为网络实现高可靠性和公平性:1)自上而下的方法,以选择最佳的群集父集(CPS)以最大程度地减少能量消耗网络并利用路径多样性,同时实现全球目标; 2)CPS中节点之间基于监听的协调,以避免重复传输; 3)CPS中的优先级基于剩余能量和有损条件的混合无线信道,4)用于检测和重新传输丢失的数据包的有效丢失恢复方案,以及5)完善传输功率以增加网络容量(增加空间复用)并进一步保留能量。大量的仿真结果表明,与基准测试(即RPL)相比,我们提出的方法可以在各种情况下有效延长网络的寿命,并实现更可靠的数据传输。 (C)2016 Elsevier B.V.保留所有权利。

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