Development of a basic prototype of hardware and software for physical security and access control in institutional environments that contains valuable assets and information

Authors

DOI:

https://doi.org/10.33448/rsd-v12i4.39849

Keywords:

Prototype; Safety; Hardware; Software; Programming.

Abstract

Introduction: The security of institutional environments, which contain valuable assets, is often done by expensive proprietary hardware and software systems. Aiming to alleviate this problem, this article proposes an initial solution based on software development and use of free hardware, mostly open source, so that in the future it can be used to protect these environments. Our goal is to propose a Basic Hardware Prototype and a Web System using free technologies, aiming to propose a software and hardware base to generate security and door opening control in environments. Methodology: In this project, we researched the tools and technologies available for the creation of the Prototype and the Web System, the tools for development were defined, we created work plans for modeling, creation and development, and finally the work in the solution was put into practice using programming language. Results: We developed a Basic Hardware Prototype using the Arduino platform along with other accessory components in order to be able to communicate with the Web Software. This was initially modeled using a class diagram and later developed using the Grails framework with Groovy programming language, in addition to MySQL for data storage. This system contains developed web services that can be accessed by the prototype. With these artifacts produced, we were able to create a basic solution that will serve as an initial model for the implementation of a low-cost and more robust security system in the future.

Author Biography

Ewerthon Dyego de Araújo Batista, Instituto Federal de Educação, Ciência e Tecnologia da Paraíba

Teacher at IFPB

References

Allas, T., Dillon, R., & Gupta, V. (2018). A smarter approach to cost reduction in the public sector. McKinsey & Company. https://www.mckinsey.com/industries/public-sector/our-insights/a-smarter-approach-to-cost-reduction-in-the-public-sector

Arduino CC (2022). Acessado em 15 de janeiro de 2023., https://www.arduino.cc

Dachyar, M., Zagloel, T. Y. M., & Saragih, L. R. (2019). Knowledge growth and development: Internet of things (IoT) research, 2006–2018. Heliyon, 5(8), e02264. https://doi.org/10.1016/j.heliyon.2019.e02264

do Brasil, G. (1993). Lei 8666. DECRETO No 3.847, DE 21 DE JUNHO DE 1993 Lei de Licitações. http://www.planalto.gov.br/ccivil_03/leis/l8666cons.htm

do Brasil, G. (2016). DECRETO no 8.638, de 15 de Janeiro de 2016. Institui a Política de Governança Digital no âmbito dos órgãos e das entidades da administração pública federal. http://www.planalto.gov.br/ccivil_03/_ato2015-2018/2016/decreto/d8638.htm

Foxcrestsecurity (2017). Proprietary Security System Equipment - Love it or Hate It? FoxCrest Security. Acessado em 15 de janeiro de 2023. https://foxcrestsecurity.com/proprietary-security-system

Fraga-Lamas, P., Fernández-Caramés, T., Suárez-Albela, M., Castedo, L., & González-López, M. (2016). A review on internet of things for defense and public safety. Sensors, 16(10), 1644. https://doi.org/10.3390/s16101644

Grails framework. (2022). Acessado em 10 de dezembro de, 2022. https://grails.org

Groovy language. (2022).The Apache Groovy programming language. Acessado em 10 de dezembro de, 2022. https://groovy-lang.org

Groovy. (2007). In Groovy Programming (pp. 341–348). Elsevier. http://dx.doi.org/10.1016/b978-012372507-3/50029-0

Hutter, D. (2019). Information Security Reading Room Physical Security and Why It. https://www.sans.org/reading-room/whitepapers/physical/paper/37120

IntelliJ IDEA. (2022). An IDE called IntelliJ IDEA by JetBrains. https://www.jetbrains.com/idea.

ISO 27001. (2020). Acessado em 07 de março de, 2020, https://www.27001.pt

ISO 27002. (2020). Acessado em 07 de março de, 2020: https://en.wikipedia.org/wiki/ISO/IEC_27002

ORG, scrum. (2022). What is Scrum? Scrum.Org. Acessado em 07 de março de, 2020 . https://www.scrum.org/resources/what-is-scrum

Rocher, G., & Brown, J. (2009). Web services. In The Definitive Guide to Grails (pp. 449–485). Apress. http://dx.doi.org/10.1007/978-1-4302-0871-6_15

Software Livre. Projeto GNU. (2020). O que é o software livre? Free Software Foundation. https://www.gnu.org/philosophy/free-sw.pt-br.html

Sood, G., Shipra, & Soni, R. (2016). Comparative Study: Proprietary Software vs. Open Source Software. International Journal of Innovative Research in Computer and Communication Engineering, 4.

Thomsen, A. (2020). Open Hardware. Vamos falar de Open Hardware? FilipeFlop. Acessado em 07 de março de, 2020. https://www.filipeflop.com/blog/open-hardware-livre

Vasconcelos Lima, G., & Raposo Pereira Feitosa, G. (2014). Políticas públicas para o software livre, práticas colaborativas e os princípios da administração pública. Direito e Novas Tecnologias Ii: Xxiii Congresso Nacional Do Conpedi., 23(1), 379–393.

Zlatanov, N. (2015). Arduino and Open Source Computer Hardware and Software. 10.13140/RG.2.1.1071.7849.

Published

31/03/2023

How to Cite

LIRA, R. V. .; BATISTA, E. D. de A. .; ALVES, L. V. do N. .; LOURENÇO, A. dos S. A. .; GONZAGA, G. M. . Development of a basic prototype of hardware and software for physical security and access control in institutional environments that contains valuable assets and information. Research, Society and Development, [S. l.], v. 12, n. 4, p. e8812439849, 2023. DOI: 10.33448/rsd-v12i4.39849. Disponível em: https://rsdjournal.org/index.php/rsd/article/view/39849. Acesso em: 24 apr. 2024.

Issue

Section

Exact and Earth Sciences