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Joint scheduling jamming for data secrecy in wireless networks

机译:无线网络中数据保密的联合调度和干扰

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摘要

The broadcast nature of the wireless medium jeopardizes secure transmissions. Cryptographic measures fail to ensure security when eavesdroppers have superior computational capability; however, it can be assured from information theoretic security approaches. We use physical layer security to guarantee non-zero secrecy rate in single source, single destination multi-hop networks with eavesdroppers for two cases: when eavesdropper locations and channel gains are known and when their positions are unknown. We propose a two-phase solution which consists of finding activation sets and then obtaining transmit powers subject to SINR constraints for the case when eavesdropper locations are known. We introduce methods to find activation sets and compare their performance. Necessary but reasonable approximations are made in power minimization formulations for tractability reasons. For scenarios with no eavesdropper location information, we suggest vulnerability region (the area having zero secrecy rate) minimization over the network. Our results show that in the absence of location information average number of eavesdroppers who have access to data is reduced.
机译:无线介质的广播性质危及安全传输。当窃听者具有出色的计算能力时,密码措施无法确保安全性;但是,可以从信息理论安全方法中确保这一点。在两种情况下,我们使用物理层安全性来确保带有窃听者的单源​​,单目的地多跳网络中的非零保密率:两种情况:当窃听者的位置和信道增益已知时,以及它们的位置未知时。我们提出了一个两阶段解决方案,其中包括在已知窃听者位置的情况下,找到激活集,然后获得受SINR约束的发射功率。我们介绍了找到激活集并比较其性能的方法。由于易处理性原因,在功率最小化公式中需要进行必要但合理的近似。对于没有窃听者位置信息的情况,我们建议将网络上的漏洞区域(保密率为零的区域)最小化。我们的结果表明,在没有位置信息的情况下,可以访问数据的窃听者的平均数量减少了。

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