IoT-REX: A Secure Remote-Control System for IoT Devices from Centralized Multi-Designated Verifier Signatures
Yohei Watanabe, Naoto Yanai, Junji Shikata

TL;DR
This paper introduces IoT-REX, a secure remote-control system for IoT devices utilizing a novel cryptographic primitive called CMDVS, enabling efficient and secure device management to mitigate IoT malware threats.
Contribution
It proposes a new cryptographic primitive, CMDVS, tailored for IoT remote control, and demonstrates its practical efficiency and feasibility on low-power devices like Raspberry Pi.
Findings
CMDVS reduces communication size by 70%
IoT-REX is three times faster than trivial methods
Feasible implementation on Raspberry Pi
Abstract
IoT technology has been developing rapidly, while at the same time, notorious IoT malware such as Mirai is a severe and inherent threat. We believe it is essential to consider systems that enable us to remotely control infected devices in order to prevent or limit malicious behaviors of infected devices. In this paper, we design a promising candidate for such remote-control systems, called IoT-REX (REmote-Control System for IoT devices). IoT-REX allows a systems manager to designate an arbitrary subset of all IoT devices in the system, and every device can confirm whether or not the device itself was designated; if so, the device executes a command given by the systems manager. Towards realizing IoT-REX, we introduce a novel cryptographic primitive called centralized multi-designated verifier signatures (CMDVS). Although CMDVS works under a restricted condition compared to conventional…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
Taxonomy
TopicsAdvanced Malware Detection Techniques · Network Security and Intrusion Detection · Cryptographic Implementations and Security
