基于最优网络编码的物联网/ wsn网络内数据存储与检索

C. H. S. Oliveira, Y. Ghamri-Doudane, Carlos Eduardo F. Brito, S. Lohier
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引用次数: 5

摘要

物联网(IoT)的发展允许开发新的服务和应用程序,但也引发了一系列需要解决的新问题。其中,存在着与wsn在物联网领域的集成相关的问题,包括与数据访问相关的问题。在本文中,我们更精确地解决了在物联网领域集成的WSN中执行的网络内数据存储和数据检索。为了开发适合此场景的数据存储方案,我们首先设计了一个在物联网领域集成虚拟代理编码(VBC)数据存储方案的系统。然后,我们提出了一种动态自适应虚拟代理编码(DA-VBC)算法,该算法根据网络的实际情况,动态地将VBC中采用的数据包冗余级别调整为最优冗余级别,以保证可靠的数据存储和数据检索。为此,我们将最优冗余级别的选择建模为马尔可夫决策过程(MDP)问题。使用MDP找到的最优策略,DA-VBC总是以最小的成本效益执行网络,这意味着允许更多的数据包被检索,而不会使能量消耗过载。仿真结果表明,动态自适应冗余级别提高了数据存储方案的可靠性,同时实现了与不使用冗余的方案相当的能耗。此外,他们还表明,成本效益指标的优化远比只优化一个指标(例如成本或数据包传送率)或使用固定的冗余级别要有效得多。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Network Coding-Based In-Network Data Storage and Data Retrieval for IoT/WSNs
The evolution of the Internet of Things (IoT) allows the development of new services and applications but triggers as well a full set of new issues to be solved. Among them, there are the problems related to the integration of the WSNs in the IoT realm including those related to data access. In this paper, we address more precisely the in-network data storage and data retrieval performed in a WSN integrated in the IoT realm. In order to develop an adequate data storage scheme for this scenario, we first design a system that integrates the Virtual Broking Coding (VBC) data storage scheme in the IoT realm. Then, we propose an algorithm called Dynamic Adaptive Virtual Broking Coding (DA-VBC) that adapts dynamically the packet redundancy level adopted in VBC to the optimal redundancy level, regarding the actual condition of the network, in order to ensure a reliable data storage and data retrieval. To do so, we model the choice of the optimal redundancy level as a Markov Decision Process (MDP) problem. Using the optimal policy found by the MDP, DA-VBC always performs with the minimum cost-benefit for the network which means allowing more packet to be retrieved without overload the energy consumption. The simulation results confirm that the dynamic adaptation of the redundancy level improves the reliability of the data storage scheme while achieving an energy consumption comparable to the solution that does not use any redundancy. Besides, they show that the optimization of the cost-benefit metric is far more efficient than optimizing only one metric (for instance the cost or the packet delivery ratio), or using a fixed redundancy level.
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