Enhancing Cybersecurity Defense of IoT Ecosystem Using Blockchain
DOI:
https://doi.org/10.55766/sujst-2023-04-e01071Keywords:
IoT, cybersecurity, blockchain, smart ecosystem, smart contract, firmwareAbstract
The expansion of IoT devices over the past years has led to the development of smart ecosystems susceptible to cyberattacks. These ecosystems include smart industries and smart home security systems. However, when these devices are widely deployed and generate significant amounts of data, this data must be securely stored on the cloud to prevent it from being compromised by serious cyber attacks. Although traditional security methods partly meet the need to protect the privacy and security of smart IoT ecosystems, their centralized structure and limited computing power make them inefficient. However, recent advancements in blockchain technology have made it possible to employ decentralized architectures to enhance the cybersecurity defense mechanisms of IoT ecosystems. The utilization of blockchain-enabled methodologies is considered one of the most auspicious advancements in the domain of the IoT. These techniques offer a secure and decentralized mode of communication among internet-connected devices.
This study presents a blockchain-based novel framework to enhance the cybersecurity measures of smart IoT ecosystem installations. The proposed framework prioritizes the immutability of devices and users present in such environments and incorporates smart contracts to ensure their overall security. Furthermore, the system includes a module for regularly verifying the firmware of connected devices by comparing them to the valid firmware hashes present in the smart contract's storage. The proposed approach has also come up with the idea of blacklisting the malicious IP addresses trying to connect with IoT ecosystems network.
References
Jozef Mocnej, Winston K.G. Seah, Adrian Pekar, Iveta Zolotova, Decentralised IoT Architecture for Efficient Resources Utilisation, IFAC-PapersOnLine, Volume 51, Issue 6, 2018, Pages 168-173, ISSN 2405-8963, https://doi.org/10.1016/j.ifacol.2018.07.148.
Kholoud Y. Najmi, Mohammed A. AlZain, Mehedi Masud, N.Z. Jhanjhi, Jehad Al-Amri, Mohammed Baz, A survey on security threats and countermeasures in IoT to achieve users confidentiality and reliability, Materials Today: Proceedings, 2021, ISSN 2214-7853, https://doi.org/10.1016/j.matpr.2021.03.417.
Miraz, M. H., & Ali, M. (2018). Blockchain enabled enhanced IoT ecosystem security. In Emerging Technologies in Computing: First International Conference, iCETiC 2018, London, UK, August 23–24, 2018, Proceedings 1 (pp. 38-46). Springer International Publishing.
Benattia, A., & Ali, M. (2008). Convergence of technologies in the machine-to-machine (M2M) space. In Proceedings of the IEEE Internationa Conference on Applied Electronics (pp. 9-12)
Feki, M. A., Kawsar, F., Boussard, M., & Trappeniers, L. (2013). The internet of things: the next technological revolution. Computer, 46(2), 24-25.
Christidis, K., & Devetsikiotis, M. (2016). Blockchains and smart contracts for the internet of things. Ieee Access, 4, 2292-2303.
Kim, J. Y., Holz, R., Hu, W., & Jha, S. (2017, December). Automated analysis of secure internet of things protocols. In Proceedings of the 33rd Annual Computer Security Applications Conference (pp. 238-249).
Aman, M. N., Chua, K. C., & Sikdar, B. (2017). Mutual authentication in IoT systems using physical unclonable functions. IEEE Internet of Things Journal, 4(5), 1327-1340.
Boudguiga, A., Bouzerna, N., Granboulan, L., Olivereau, A., Quesnel, F., Roger, A., & Sirdey, R. (2017, April). Towards better availability and accountability for iot updates by means of a blockchain. In 2017 IEEE European Symposium on Security and Privacy Workshops (EuroS&PW) (pp. 50-58). IEEE.
Yohan, A., & Lo, N. W. (2018, December). An over-the-blockchain firmware update framework for IoT devices. In 2018 IEEE Conference on Dependable and Secure Computing (DSC) (pp. 1-8). IEEE.
Rodrigues, B., Bocek, T., Lareida, A., Hausheer, D., Rafati, S., & Stiller, B. (2017). A blockchain-based architecture for collaborative DDoS mitigation with smart contracts. In Security of Networks and Services in an All-Connected World: 11th IFIP WG 6.6 International Conference on Autonomous Infrastructure, Management, and Security, AIMS 2017, Zurich, Switzerland, July 10-13, 2017, Proceedings 11 (pp. 16-29). Springer International Publishing.
Anastasiou, A., Christodoulou, P., Christodoulou, K., Vassiliou, V., & Zinonos, Z. (2020, May). Iot device firmware update over lora: The blockchain solution. In 2020 16th International Conference on Distributed Computing in Sensor Systems (DCOSS) (pp. 404-411). IEEE.
Giannoutakis, K. M., Spathoulas, G., Filelis-Papadopoulos, C. K., Collen, A., Anagnostopoulos, M., Votis, K., & Nijdam, N. A. (2020, November). A blockchain solution for enhancing cybersecurity defence of IoT. In 2020 IEEE International Conference on Blockchain (Blockchain) (pp. 490-495). IEEE.








