IoT-Scan: Network Reconnaissance for the Internet of Things
Network reconnaissance is a core networking and security procedure aimed at discovering devices and their properties. For IP-based networks, several network reconnaissance tools are available, such as Nmap. For the Internet of Things (IoT), there is currently no similar tool capable of discovering devices across multiple protocols. In this paper, we present IoT-Scan, a universal IoT network reconnaissance tool. IoT-Scan is based on software defined radio (SDR) technology, which allows for a flexible software-based implementation of radio protocols. We present a series of passive, active, multi-channel, and multi-protocol scanning algorithms to speed up the discovery of devices with IoT-Scan. We benchmark the passive scanning algorithms against a theoretical traffic model based on the non-uniform coupon collector problem. We implement the scanning algorithms and compare their performance for four popular IoT protocols: Zigbee, Bluetooth LE, Z-Wave, and LoRa. Through extensive experiments with dozens of IoT devices, we demonstrate that our implementation experiences minimal packet losses and achieves performance near the theoretical benchmark. Using multi-protocol scanning, we further demonstrate a reduction of 70\% in the discovery times of Bluetooth and Zigbee devices in the 2.4\,GHz band and of LoRa and Z-Wave devices in the 900\,MHz band, compared to sequential passive scanning. We make our implementation and data available to the research community to allow independent replication of our results and facilitate further development of the tool.
Code (0)
등록된 구현이 없습니다.
Methods 이 논문이 사용한 방법론
Similar Papers 제목 키워드 기반
Maximizing Penetration Testing Success with Effective Reconnaissance Techniques using ChatGPT
ChatGPT is a generative pretrained transformer language model created using artificial intelligence implemented as chatbot which can provide very detailed responses to a wide variety of questions. As a very contemporary …
ChatbotLanguage ModellingZooming Into the Darknet: Characterizing Internet Background Radiation and its Structural Changes
Network telescopes or "Darknets" provide a unique window into Internet-wide malicious activities associated with malware propagation, denial of service attacks, scanning performed for network reconnaissance, and others. …
ClusteringRepresentation LearningTuring Test for the Internet of Things
How smart is your kettle? How smart are things in your kitchen, your house, your neighborhood, on the internet? With the advent of Internet of Things, and the move of making devices `smart' by utilizing AI, a natural que…
6G Internet of Things: A Comprehensive Survey
The sixth generation (6G) wireless communication networks are envisioned to revolutionize customer services and applications via the Internet of Things (IoT) towards a future of fully intelligent and autonomous systems. …
Autonomous DrivingSurveyLow power communication signal enhancement method of Internet of things based on nonlocal mean denoising
In order to improve the transmission effect of low-power communication signal of Internet of things and compress the enhancement time of low-power communication signal, this paper designs a low-power communication signal…
Denoising