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A Permutation-Based Model for Analysis of Resource Allocation Overheads in Vehicular Ad Hoc Networks

机译:基于置换基于允许的车辆临时网络资源分配开销模型

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摘要

This paper considers the theoretical limits of resource allocation overheads in vehicular ad hoc networks (VANETs), where the resource allocation procedure may consume extensive system resources. A permutation-based model is proposed to analyze the overhead limits where the unordered resource allocation patterns are considered as a permutation process. The minimum bits to represent the resource allocation information can be derived based on the permutation-based model. The bipartite graph is applied to describe the resource reuse in the respective domains for practical scenarios, and the dynamicity is taken into consideration. The proposed permutation-based model is applied to analyze the resource allocation overheads of two typical resource allocation schemes in VANETs: time-division multiple access (TDMA) and cluster-based algorithms. The proposed methodology provides new insights in a tradeoff analysis between overheads and system efficiency when analyzing the capacity of the VANETs.
机译:本文考虑了车辆临时网络(VANET)中资源分配开销的理论限制,其中资源分配过程可能会消耗广泛的系统资源。提出了一种基于置换的模型来分析无序资源分配模式被认为是置换过程的开销限制。可以基于基于置换的模型来导出要表示资源分配信息的最小比特。应用二分图来描述各个域中的资源重用以进行实际情况,并考虑动态性。应用所提出的基于置换的模型来分析VAINE中的两个典型资源分配方案的资源分配开销:时分多址(TDMA)和基于群集的算法。所提出的方法在分析了VANET的容量时,在开销和系统效率之间的权衡分析中提供了新的见解。

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