探索具有物理层安全性的ad-hoc网络中的机会调度

Donglai Sun, H. Benaboud, Mikou Noufissa, Jianhua Li
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引用次数: 3

摘要

本文研究了物理层安全下的调度方案。这一新兴技术的引入是为了给无线自组织网络提供完美的保密性。但同时也给系统带来了很大的网络性能损失。由于无线网络中存在不同物理层的链路,采用传统的调度方案会影响网络的整体吞吐量等服务质量。因此,必须开发新的MAC层调度方案。本文采用按比例传输速率的机会调度方法来解决这一问题。对不同链路的不同传输速率采用加权标度函数,并采用最优停止理论保证每条链路只使用较好的部分进行传输。可以为调度方案导出纯阈值策略。同时考虑了分布式自组织网络的情况,利用博弈论进行纳什均衡来选择个体权重。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring opportunistic scheduling in ad-hoc network with physical layer security
In this paper, scheduling scheme under physical layer security is studied. This emerging technology is introduced to provide perfect secrecy to wireless ad-hoc network. However, a big loss of network performance is also imported to the system. As links with different physical layers coexist in the wireless network, service qualities like overall throughput are affected if traditional scheduling schemes are applied. Thus, new MAC layer scheduling scheme has to be developed. Here, opportunistic scheduling with scaled transmission rate is used to solve the problem. A weighted scaling function is applied on different transmission rate of diversified links, and optimal stopping theory is employed to ensure that only the good part of each link is used for transmitting. A pure threshold policy can be derived for the scheduling scheme. The scenario with distributed ad-hoc network is also considered, a Nash equilibrium can be conducted using game theory for the selection of individual weights.
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