The Internet of things (IoT) are increasingly exposed to a wide range of security threats. Despite the enormous opportunities that IoT world offers, IoT devices are prone to many cyberattacks. One effective security mechanism to identify malicious entities in an IoT system is Remote Attestation. Remote Attestation is an interactive protocol that allows a remote trusted Verifier to assess the integrity of an untrusted device by typically checking whether the received measurement conforms to an expected legitimate configuration. In this thesis, we provide a four-fold contribution, (1) we review working mechanisms of state-of-the-art Collective Remote Attestation (CRA) techniques 2) we address the problem of device mobility during attestation and asynchronous attestation of IoT services, (3) we propose a novel configurable-hardware enabled remote attestation techniques for low-end embedded devices, and, (4) we show how remote attestation can be employed to provide security and safe operation to other traditional applications.
Remote Attestation for Secure Internet of Things / Rabbani, MD MASOOM. - (2020 Jan 26).
Remote Attestation for Secure Internet of Things
RABBANI, MD MASOOM
2020
Abstract
The Internet of things (IoT) are increasingly exposed to a wide range of security threats. Despite the enormous opportunities that IoT world offers, IoT devices are prone to many cyberattacks. One effective security mechanism to identify malicious entities in an IoT system is Remote Attestation. Remote Attestation is an interactive protocol that allows a remote trusted Verifier to assess the integrity of an untrusted device by typically checking whether the received measurement conforms to an expected legitimate configuration. In this thesis, we provide a four-fold contribution, (1) we review working mechanisms of state-of-the-art Collective Remote Attestation (CRA) techniques 2) we address the problem of device mobility during attestation and asynchronous attestation of IoT services, (3) we propose a novel configurable-hardware enabled remote attestation techniques for low-end embedded devices, and, (4) we show how remote attestation can be employed to provide security and safe operation to other traditional applications.File | Dimensione | Formato | |
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