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Preserving the Incumbent Users’ Location Privacy in the 3.5 GHz Band

机译:在3.5 GHz频带中保护在位用户的位置隐私

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In dynamic spectrum sharing (DSS) ecosystem with non-informing incumbent users (IUs), Environmental Sensing Capability (ESC) system has been proposed to detect IU activity information for a geolocation database-driven spectrum access system (SAS). SAS then allocates unused spectrum left by IUs to secondary users (SUs). However, IU location information is often highly sensitive and thus it is preferable to avoid storing ESC sensing data on a SAS, especially if the SAS is a potential target of cyber attacks. None of existing works studied the IU location privacy protection problem in such an ESC-based dynamic spectrum access (DSA) system. In this paper, we fill in the void by proposing novel privacy-preserving ESC-based dynamic spectrum access (PriDSA) schemes. We designed two versions of PriDSA that preserve IU privacy to different extent under two different adversary models, namely non-colluding honest but curious SAS model and colluding malicious SAS model. Evaluation results show that PriDSA is efficient in terms of communication and computation overhead and accurately serves SU spectrum access requests while preserving location privacy of IUs.
机译:在具有非通知现有用户(IU)的动态频谱共享(DSS)生态系统中,已经提出了环境感知能力(ESC)系统来检测地理位置数据库驱动的频谱访问系统(SAS)的IU活动信息。然后,SAS将IU剩余的未使用频谱分配给辅助用户(SU)。但是,IU位置信息通常非常敏感,因此最好避免在SAS上存储ESC感应数据,尤其是在SAS可能成为网络攻击目标的情况下。现有的工作都没有在这种基于ESC的动态频谱访问(DSA)系统中研究IU位置隐私保护问题。在本文中,我们通过提出新颖的基于ESC的隐私保护的动态频谱访问(PriDSA)方案来填补空白。我们设计了两种版本的PriDSA,它们在两种不同的攻击者模型(即无冲突诚实但好奇的SAS模型和共谋恶意SAS模型)下在不同程度上保护了IU隐私。评估结果表明,PriDSA在通信和计算开销方面是高效的,并且可以准确地满足SU频谱访问请求,同时保留IU的位置隐私。

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