Link Peek:基于6LoWPAN/RPL的低功耗损耗网络(lln)的链路中断弹性IP包转发机制

Y. Lohith, S. Narasimman, S. Anand, M. Hegde
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引用次数: 7

摘要

通过多跳低功耗和有损网络(LLN)的数据包在传输过程中会遇到各种链路中断情况,这些情况可能导致中间中继节点上的数据包丢失。由于在运行RPL(低功耗和损耗网络路由协议)路由协议的lln中提供高分组传输率(PDR)的问题,我们在网络层的数据包转发机制Link Peek中实现了轻量级附加功能。其中转发节点迭代重传数据包到属于同一RPL DODAG(Destination Oriented Directed A cyclic Graph)实例的备用/次优父节点,每当超过我们的机制为当前最佳父节点设置的IEEE 802.15.4 MAC层重传计数时。通过这种简单的反应性和连续重试机制,我们的实验表明,在不同操作环境下的lln上,即使在更高的数据速率下,也可以实现高pdr,从而显著提高性能。我们在Contiki RPL协议栈上实现了Link Peek。我们描述了实现细节,并讨论了影响网络性能的各种可调参数。Cooja模拟和链路中断环境下的真实物理测试平台实验表明,link Peek的pdr > 99.40%,而使用本地网络堆栈实现的pdr为76-90%。通过实验结果,我们证明了我们的方法在节点移动场景下支持更高数据速率的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Link Peek: A Link Outage Resilient IP Packet Forwarding Mechanism for 6LoWPAN/RPL Based Low-Power and Lossy Networks (LLNs)
Packets traversing through a multi-hop Low-power and Lossy Network (LLN) experience various link outage conditions in transit that can lead to packet loss at an intermediate relay node. Motivated by the problem of providing high Packet Delivery Ratio (PDR) in the LLNs running RPL(Routing Protocol for Low-power and Lossy Networks) routing protocol, we implemented a lightweight add-on functionality to the network layer's packet forwarding mechanism, Link Peek, in which the forwarding node iteratively retransmits the packet to its alternate/next best parent belonging to the same RPL DODAG(Destination Oriented Directed A cyclic Graph) instance whenever IEEE 802.15.4 MAC layer retransmission count set by our mechanism for the current best parent is exceeded. With this simple reactive and successive retry mechanism, our experimentation has shown significant performance gain in terms of achieving high PDRs, even at higher data rates, over the LLNs under different operating environments. We implemented Link Peek over the Contiki RPL protocol stack. We describe the implementation details and discuss various tunable parameters that affect the network performance. The Cooja simulation and real-world physical test bed experimentation with link outage environment showed PDRs > 99.40% with Link Peek as against the PDRs of 76-90% obtained using the native network stack implementation. Through the experimental results we demonstrate the effectiveness of our approach in supporting higher data rates even in node mobility scenarios.
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