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A Statistical Modulation Type Identifier for Remote Keyless Entry Transmitters Based on Extended Energy Detector

机译:基于扩展能量检测器的远程无钥匙进入发射机的统计调制类型识别器

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摘要

Remote keyless entry (RKE) systems are an integral part of modern daily life. Vehicle access, drive authorization, and arming/disarming the alarm systems for houses, garages, and/or facilities are instances for popular uses of RKE. Despite their obvious advantages such as gaining access/authorization solely by carrying them, any security breach experienced with remote keyless entrys (RKEs) could end up with cataclysmic consequences. Therefore, manufacturers continuously develop new methods and techniques to fortify their RKEs systems. One of the prominent ways of tackling the inherent security concern is to establish a rapid wireless message exchange mechanism/protocol such that intruders could not have time to place their attacks. However, with recent advances in digital technology along with software-defined radio (SDR), quantification of rapidness becomes crucial for RKE manufacturers. Therefore, in this study, a statistical modulation type identifier for RKEs systems is proposed. Both an automatic modulation type identifier based on complex baseband equivalent of the received signal and an automatic mode detector are employed as an extension of traditional energy detector. This way, presumable bottlenecks for the receiver at intruder side are identified and elaborated. Measurement results are provided along with relevant discussions. Results demonstrate that frequency compensation along with energy detection are the two indispensable serial modules and provide the bottleneck for any receiver at intruder's side.
机译:远程无钥匙进入(RKE)系统是现代日常生活不可或缺的一部分。车辆进入,驾驶授权以及房屋,车库和/或设施的警报系统的布防/撤防都是RKE的常用实例。尽管它们具有明显的优势(例如仅通过携带它们获得访问/授权),但是远程无密钥进入(RKE)遇到的任何安全漏洞都可能导致灾难性后果。因此,制造商不断开发新的方法和技术来加强其RKE系统。解决固有安全问题的主要方法之一是建立快速的无线消息交换机制/协议,以使入侵者没有时间进行攻击。但是,随着数字技术和软件无线电(SDR)的最新发展,快速量化对于RKE制造商至关重要。因此,在这项研究中,提出了用于RKEs系统的统计调制类型标识符。基于接收信号的复基带等效的自动调制类型识别器和自动模式检测器都被用作传统能量检测器的扩展。这样,识别并阐述了入侵者接收方的可能瓶颈。提供测量结果以及相关讨论。结果表明,频率补偿和能量检测是两个必不可少的串行模块,它们为入侵者一侧的任何接收器提供了瓶颈。

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