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Article

Towards a Secure and Scalable Maritime Monitoring System Using Blockchain and Low-Cost IoT Technology †

by
Warlley Paulo Freire
1,
Wilson S. Melo, Jr.
2,
Vinicius D. do Nascimento
3,
Paulo R. M. Nascimento
2 and
Alan Oliveira de Sá
4,*
1
Adm. Wandenkolk Instruction Center, Brazilian Navy, Rio de Janeiro 20180-003, RJ, Brazil
2
National Institute of Metrology, Quality, and Technology, Duque de Caxias 25250-020, RJ, Brazil
3
CISMAR, Brazilian Navy, and COPPE/Sistemas-UFRJ, Rio de Janeiro 21941-972, RJ, Brazil
4
LASIGE, Departamento de Informática, Faculdade de Ciências, Universidade de Lisboa, 1749-016 Lisboa, Portugal
*
Author to whom correspondence should be addressed.
This paper is an extended version of our paper published in: W. P. Freire, W. S. Melo, V. D. Nascimento and A. O. de Sá, “Blockchain-based Maritime Monitoring System,” Proceedings of 2021 International Workshop on Metrology for the Sea (MetroSea), Reggio Calabria, Italy, 4–6 October 2021, pp. 394–399, https://doi.org/ 10.1109/MetroSea52177.2021.9611587.
Sensors 2022, 22(13), 4895; https://doi.org/10.3390/s22134895
Submission received: 12 May 2022 / Revised: 31 May 2022 / Accepted: 2 June 2022 / Published: 29 June 2022

Abstract

Maritime Domain Awareness (MDA) is a strategic field of study that seeks to provide a coastal country with an effective monitoring of its maritime resources and its Exclusive Economic Zone (EEZ). In this scope, a Maritime Monitoring System (MMS) aims to leverage active surveillance of military and non-military activities at sea using sensing devices such as radars, optronics, automatic Identification Systems (AISs), and IoT, among others. However, deploying a nation-scale MMS imposes great challenges regarding the scalability and cybersecurity of this heterogeneous system. Aiming to address these challenges, this work explores the use of blockchain to leverage MMS cybersecurity and to ensure the integrity, authenticity, and availability of relevant navigation data. We propose a prototype built on a permissioned blockchain solution using HyperLedger Fabric—a robust, modular, and efficient open-source blockchain platform. We evaluate this solution’s performance through a practical experiment where the prototype receives sensing data from a Software-Defined-Radio (SDR)-based low-cost AIS receiver built with a Raspberry Pi. In order to reduce scalability attrition, we developed a dockerized blockchain client easily deployed on a large scale. Furthermore, we determined, through extensive experimentation, the client optimal hardware configuration, also aiming to reduce implementation and maintenance costs. The performance results provide a quantitative analysis of the blockchain technology overhead and its impact in terms of Quality of Service (QoS), demonstrating the feasibility and effectiveness of our solution in the scope of an MMS using AIS data.
Keywords: permissioned blockchain; maritime monitoring system; hyperledger fabric; automatic identification system; Docker permissioned blockchain; maritime monitoring system; hyperledger fabric; automatic identification system; Docker

Share and Cite

MDPI and ACS Style

Freire, W.P.; Melo, W.S., Jr.; do Nascimento, V.D.; Nascimento, P.R.M.; de Sá, A.O. Towards a Secure and Scalable Maritime Monitoring System Using Blockchain and Low-Cost IoT Technology. Sensors 2022, 22, 4895. https://doi.org/10.3390/s22134895

AMA Style

Freire WP, Melo WS Jr., do Nascimento VD, Nascimento PRM, de Sá AO. Towards a Secure and Scalable Maritime Monitoring System Using Blockchain and Low-Cost IoT Technology. Sensors. 2022; 22(13):4895. https://doi.org/10.3390/s22134895

Chicago/Turabian Style

Freire, Warlley Paulo, Wilson S. Melo, Jr., Vinicius D. do Nascimento, Paulo R. M. Nascimento, and Alan Oliveira de Sá. 2022. "Towards a Secure and Scalable Maritime Monitoring System Using Blockchain and Low-Cost IoT Technology" Sensors 22, no. 13: 4895. https://doi.org/10.3390/s22134895

APA Style

Freire, W. P., Melo, W. S., Jr., do Nascimento, V. D., Nascimento, P. R. M., & de Sá, A. O. (2022). Towards a Secure and Scalable Maritime Monitoring System Using Blockchain and Low-Cost IoT Technology. Sensors, 22(13), 4895. https://doi.org/10.3390/s22134895

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