NASK-National Research Institute, Kolska 12, Warsaw 01-045, Poland.
Faculty of Electronics, Military University of Technology, Urbanowicza 2, Warsaw 00-908, Poland.
Sensors (Basel). 2018 May 26;18(6):1718. doi: 10.3390/s18061718.
In this paper, the applicability of the network coding technique in 6LoWPAN-based sensor multihop networks is examined. The 6LoWPAN is one of the standards proposed for the Internet of Things architecture. Thus, we can expect the significant growth of traffic in such networks, which can lead to overload and decrease in the sensor network lifetime. The authors propose the inter-session network coding mechanism that can be implemented in resource-limited sensor motes. The solution reduces the overall traffic in the network, and in consequence, the energy consumption is decreased. Used procedures take into account deep header compressions of the native 6LoWPAN packets and the hop-by-hop changes of the header structure. Applied simplifications reduce signaling traffic that is typically occurring in network coding deployments, keeping the solution usefulness for the wireless sensor networks with limited resources. The authors validate the proposed procedures in terms of end-to-end packet delay, packet loss ratio, traffic in the air, total energy consumption, and network lifetime. The solution has been tested in a real wireless sensor network. The results confirm the efficiency of the proposed technique, mostly in delay-tolerant sensor networks.
本文研究了网络编码技术在基于 6LoWPAN 的传感器多跳网络中的适用性。6LoWPAN 是物联网架构中提出的标准之一。因此,我们可以预期此类网络中的流量将大幅增长,这可能导致网络过载和传感器网络寿命缩短。作者提出了一种可在资源有限的传感器节点中实现的会话间网络编码机制。该解决方案减少了网络中的总体流量,从而降低了能耗。所使用的过程考虑了本机 6LoWPAN 数据包的深度头部压缩和头部结构的逐跳变化。应用的简化减少了在网络编码部署中通常发生的信令流量,使该解决方案对资源有限的无线传感器网络仍然有用。作者从端到端分组延迟、分组丢失率、空中流量、总能耗和网络寿命等方面验证了所提出的过程。该解决方案已在真实的无线传感器网络中进行了测试。结果证实了所提出技术的效率,尤其是在延迟容忍的传感器网络中。