Unobtrusive Location-based Access Control Utilizing Existing IEEE 802.11 Infrastructure -- 2020 IEEE Microwave Theory and Techniques in Wireless Communications (MTTW)
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Mobile devices can sense several types of signals over the air using different radio frequency technologies (e.g., Wi-Fi, Bluetooth, cellular signals, etc.). Furthermore, mobile devices receive broadcast messages from transmitting entities (e.g., network access points, cellular phone towers, etc.) and can measure the received signal strength from these entities. Broadcast messages carry the information needed in case a mobile device chooses to establish communication. We believe that these signals can be utilized in the context of access control, specifically because they could provide an indication of the location of a user's device. Such a "location proof" could then be used to verify users' locations. In this research, we propose a location bases access control mechanism that utilizes tokens broadcasted by IEEE 802.11 access points, which are then used to derive a location proof. This work differs from existing research in that it allows the verification of a client's location continuously and unobtrusively, utilizing existing IEEE 802.11 infrastructure (which makes it easily deployable), and resulting in a secure and convenient location verification mechanism. The proposed mechanism attempts to take advantage of the current IEEE 802.11 infrastructure, making it directly applicable to an existing ubiquitous system infrastructure.