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Toward Proper Guard Zones for Link Signature

机译:进入适当的防护区域以进行链接签名

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摘要

Motivated by information-theoretic security, link signature (LS)-based security mechanisms exploit the ample channel characteristics between wireless devices for security establishment. Nevertheless, LS is originated from wireless environments and hence may exhibit potential vulnerabilities that can be exploited by adversary in the vicinity. As to this, it is widely believed in existing literature on LS that, a half-wavelength guard zone is sufficient to decorrelate the adversary channel from the legitimate one and thereby secures the legitimate LS. However, such an assumption may not hold universally—in some environments, high channel correlations have been observed for much larger spatial separations. Considering this, a comprehensive understanding of channel correlation in different wireless environments is needed for more confident deployment of LS-based security mechanisms. To this end, various well-established channel correlation models are investigated in this work. A set of important physical factors that have significant influence on LS security are identified, and with the obtained insights, extensive simulations are conducted to explore suitable guard zone sizes for LS in several typical indoor and outdoor environments. Experimental results based on universal software radio peripheral (USRP) platforms and GNURadio are also presented to further support the analysis.
机译:基于信息理论安全性的动机,基于链路签名(LS)的安全性机制利用无线设备之间的充足信道特性来建立安全性。但是,LS源自无线环境,因此可能会表现出潜在的漏洞,附近的对手可能会利用这些漏洞。关于这一点,在关于LS的现有文献中普遍认为,半波长保护区足以使敌方信道与合法信道解相关,从而确保合法LS。但是,这种假设可能无法普遍适用-在某些环境中,对于更大的空间间隔,已观察到高通道相关性。考虑到这一点,需要对不同无线环境中的信道相关性有一个全面的了解,以更加自信地部署基于LS的安全机制。为此,在这项工作中研究了各种公认的信道相关模型。确定了一组对LS安全有重大影响的重要物理因素,并根据获得的见解,进行了广泛的仿真,以探索在几种典型的室内和室外环境中适合LS的防护区域的大小。还提出了基于通用软件无线电外围设备(USRP)平台和GNURadio的实验结果,以进一步支持分析。

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