LASeR: Lightweight Authentication and Secured Routing for NDN IoT in Smart Cities
Travis Mick, Reza Tourani, Satyajayant Misra · IEEE Internet of Things Journal · 2017
Recent literature suggests that the Internet of Things (IoT) scales much better in an information-centric networking (ICN) model instead of the current host-centric Internet protocol (IP) model. In particular, the named data networking (NDN) project (one of the ICN architecture flavors) offers features exploitable by IoT applications, such as stateful forwarding, in-network caching, and built-in assurance of data provenance. Though NDN-based IoT frameworks have been proposed, none have adequately and holistically addressed concerns related to secure onboarding and routing. Additionally, emerging IoT applications such as smart cities require high scalability and thus pose new challenges to NDN routing. Therefore, in this paper, we propose and evaluate a novel, scalable framework for lightweight authentication and hierarchical routing in the NDN IoT. Our ns-3 based simulation analyses demonstrate that our framework is scalable and efficient. It supports deployment densities as high as 40000 nodes/km2with an average onboarding convergence time of around 250 s and overhead of less than 20 kibibytes per node. This demonstrates its efficacy for emerging large-scale IoT applications such as smart cities.