Walid Khallef, M. Molnár, A. Benslimane, Sylvain Durand
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引用次数: 4
Abstract
Internet of Things is one of the most promising domain for developing new and smart applications. For some applications, Quality of Service requirement may be imposed. However, the things connected in this kind of networks are often vulnerable and dotted by limited energy (Low-power and Lossy Networks, LLNs). These networks need special solutions for routing and RPL is a standard IPv6 routing protocol to respond to needs. RPL build Destination Oriented Directed Acyclic Graphs (DODAGs) for routing. Recently, some propositions have been formulated to satisfy QoS requirements in LLNs using RPL even if there are several QoS constraints. A greedy DODAG construction has been proposed based on a Non-Linear Length which takes into account any number of constraints for QoS routing. However, it is known that the multi-constrained QoS routing is an NP-hard problem and its solution is not always a simple acyclic graph (not a tree). In this paper we present the computation of the exact solution in LLNs between a Border Router and the nodes respecting a set of QoS constraints. We propose the modification of RPL for this. Our analysis also covers a set of parameterized polynomial algorithms. We evaluate the performance of the proposed algorithms in term of execution time and scalability, the number of missing nodes during the construction of the DODAG and the quality of the paths from the Border Router to each node in the constructed DODAG.
物联网是开发新型智能应用最有前途的领域之一。对于某些申请,可能会施加服务质量要求。然而,在这种网络中连接的事物往往是脆弱的,并且点缀着有限的能量(Low-power and Lossy networks, lln)。这些网络需要特殊的路由解决方案,RPL是一种标准的IPv6路由协议来满足需求。RPL为路由构建了目标导向无环图(dodag)。近年来,人们提出了一些命题来满足使用RPL的lln中的QoS要求,即使存在一些QoS约束。提出了一种基于非线性长度的贪心DODAG结构,该结构考虑了任意数量的QoS路由约束。然而,众所周知,多约束QoS路由是一个np困难问题,其解决方案并不总是一个简单的无环图(不是树)。本文给出了边界路由器与一组QoS约束的节点之间lln的精确解的计算。为此,我们建议修改RPL。我们的分析还涵盖了一组参数化多项式算法。我们从执行时间和可扩展性、DODAG构建过程中缺失节点的数量以及从边界路由器到构建DODAG中每个节点的路径质量等方面评估了所提出算法的性能。