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Virtualization in Wireless Sensor Networks: Fault Tolerant Embedding for Internet of Things

机译:无线传感器网络中的虚拟化:物联网的容错嵌入

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摘要

Recently, virtualization in wireless sensor networks (WSNs) has witnessed significant attention due to the growing service domain for IoT. Related literature on virtualization in WSNs explored resource optimization without considering communication failure in WSNs environments. The failure of a communication link in WSNs impacts many virtual networks running IoT services. In this context, this paper proposes a framework for optimizing fault tolerance in virtualization in WSNs, focusing on heterogeneous networks for service-oriented IoT applications. An optimization problem is formulated considering fault tolerance and communication delay as two conflicting objectives. An adapted non-dominated sorting based genetic algorithm (A-NSGA) is developed to solve the optimization problem. The major components of A-NSGA include chromosome representation, fault tolerance and delay computation, crossover and mutation, and non-dominance based sorting. Analytical and simulation based comparative performance evaluation has been carried out. From the analysis of results, it is evident that the framework effectively optimizes fault tolerance for virtualization in WSNs.
机译:最近,由于物联网服务领域的增长,无线传感器网络(WSN)中的虚拟化受到了广泛关注。有关WSN中虚拟化的相关文献探讨了资源优化,而不考虑WSN环境中的通信故障。 WSN中通信链路的故障会影响许多运行IoT服务的虚拟网络。在这种情况下,本文提出了一种用于优化WSN中虚拟化中的容错能力的框架,重点是面向面向服务的IoT应用程序的异构网络。以容错和通信延迟为两个相互冲突的目标,提出了一个优化问题。为了解决优化问题,提出了一种基于自适应非支配排序的遗传算法。 A-NSGA的主要组件包括染色体表示,容错和延迟计算,交叉和变异以及基于非优势的排序。已经进行了基于分析和仿真的比较性能评估。从结果分析可以看出,该框架有效地优化了WSN中虚拟化的容错能力。

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