Feasibility Assessment of a Fine-Grained Access Control Model on Resource Constrained Sensors

Sensors (Basel). 2018 Feb 13;18(2):575. doi: 10.3390/s18020575.

Abstract

Upcoming smart scenarios enabled by the Internet of Things (IoT) envision smart objects that provide services that can adapt to user behavior or be managed to achieve greater productivity. In such environments, smart things are inexpensive and, therefore, constrained devices. However, they are also critical components because of the importance of the information that they provide. Given this, strong security is a requirement, but not all security mechanisms in general and access control models in particular are feasible. In this paper, we present the feasibility assessment of an access control model that utilizes a hybrid architecture and a policy language that provides dynamic fine-grained policy enforcement in the sensors, which requires an efficient message exchange protocol called Hidra. This experimental performance assessment includes a prototype implementation, a performance evaluation model, the measurements and related discussions, which demonstrate the feasibility and adequacy of the analyzed access control model.

Keywords: access control model; constrained device; expressive policy language; feasibility assessment; fine-grained authorization; least privilege; message exchange protocol; performance evaluation; policy codification; sensor.