Miranda, Rafael | Universidad Autónoma de Baja California |
Avilés, Jesús David | Universidad Autónoma de Baja California |
Flores-Resendiz, Juan Francisco | Universidad Autónoma de Baja California |
Márquez, Claudia Lizeth | Universidad Autónoma de Baja California |
Martinez Clark, Rigoberto | Universidad Autónoma de Baja California |
Morales Valdez, Jesús | Universidad Autónoma de la Ciudad de México |
Becerra, Guillermo | Universidad Autónoma del Estado de Quintana Roo |
https://doi.org/10.58571/CNCA.AMCA.2023.081
Resumen: This paper presents the design and application of a SCADA-IoT (Supervisory Control and Data Acquisition-Internet of Things) platform for monitoring an hydraulic system which simulates the operation of the raw water distribution network in the municipality of Tecate, Baja California (B.C.), Mexico. Based on the design and construction of an academic prototype, which represents the called Las Auras-Nopalera-Cuchum ́a hydraulic system, we analize the behaviour of physical variables and the integration of hardware and software components with Industry 4.0 in order to develop on-field applications using the LOGO! Web Editor software from Siemens, and cloud applications using the open source Node-RED IoT platform. Experimental results illustrate the efectiveness of the proposed prototype which retrieves level, pressure, caudal and pH real-time values as well as some signals from actuators
¿Cómo citar?
Miranda, Rafael; Avilés, Jesús David; Flores-Resendiz, Juan Francisco; Márquez, Claudia Lizeth; Martinez Clark, Rigoberto; Morales Valdez, Jesús; Becerra, Guillermo. Design and Application of a SCADA-IoT Platform for Monitoring a Raw Water Distribution Network. Memorias del Congreso Nacional de Control Automático, pp. 431-436, 2023. https://doi.org/10.58571/CNCA.AMCA.2023.081
Palabras clave
Educación en Control; Control de Procesos; Otros Tópicos Afines
Referencias
- Abuhasel, K.A. and Khan, M.A. (2020). A secure industrial internet of things (iiot) framework for resource management in smart manufacturing. IEEE Access, 8, 117354-117364.
- Bhamare, D., Zolanvari, M., Erbad, A., Jain, R., Khan, K., and Meskin, N. (2020). Cybersecurity for industrial control systems: A survey. computers & security, 89, 101677.
- Chanthakit, S. and Rattanapoka, C. (2018). Mqtt based air quality monitoring system using node mcu and node-red. In 2018 Seventh ICT International Student Project Conference (ICT-ISPC), 1-5. IEEE.
- Da Xu, L., He, W., and Li, S. (2014). Internet of things in industries: A survey. IEEE Transactions on industrial informatics, 10(4), 2233-2243.
- Gokhale, P., Bhat, O., and Bhat, S. (2018). Introduction to iot. International Advanced Research Journal in Science, Engineering and Technology, 5(1), 41-44.
- Huda, S., Yearwood, J., Hassan, M.M., and Almogren, A. (2018). Securing the operations in scada-iot platform based industrial control system using ensemble of Deep belief networks. Applied soft computing, 71, 66-77.
- Jaloudi, S. (2019). Communication protocols of an industrial internet of things environment: A comparative study. Future Internet, 11(3), 66.
- Liao, Y., Loures, E.d.F.R., and Deschamps, F. (2018). Industrial internet of things: A systematic literatura review and insights. IEEE Internet of Things Journal, 5(6), 4515-4525.
- Manoj, K. (2019). Industrial automation with SCADA: concepts, communications and security. Notion Press. McCrady, S.G. (2013). Designing SCADA application software: a practical approach. Elsevier.
- Omidi, S.A., Baig, M.J.A., and Iqbal, M.T. (2023). Design and implementation of node-red based open-source scada architecture for a hybrid power system. Energies, 16(5), 2092.
- Penin, A.R. (2011). Sistemas Scada. Marcombo. Perez-Lopez, E. (2015). Los sistemas scada en la automatización industrial. Revista Tecnología en Marcha, 28(4), ´ag-3.
- Phuyal, S., Bista, D., Izykowski, J., and Bista, R. (2020). Design and implementation of cost efficient scada System for industrial automation. International Journal of Engineering and Manufacturing, 10(2), 15.
- Pliatsios, D., Sarigiannidis, P., Lagkas, T., and Sarigiannidis, A.G. (2020). A survey on scada systems: secure protocols, incidents, threats and tactics. IEEE Communications Surveys & Tutorials, 22(3), 1942-1976.
- Qays, M.O., Ahmed, M.M., Parvez Mahmud, M., Abu-Siada, A., Muyeen, S., Hossain, M.L., Yasmin, F., and Rahman, M.M. (2022). Monitoring of renewable energy systems by iot-aided scada system. Energy Science & Engineering, 10(6), 1874-1885.
- Sajid, A., Abbas, H., and Saleem, K. (2016). Cloudassisted iot-based scada systems security: A review of the state of the art and future challenges. IEEE Access, 4, 1375-1384.
- Serror, M., Hack, S., Henze, M., Schuba, M., and Wehrle, K. (2020). Challenges and opportunities in securing the industrial internet of things. IEEE Transactions on Industrial Informatics, 17(5), 2985-2996.
- Sicari, S., Rizzardi, A., and Coen-Porisini, A. (2019). Smart transport and logistics: A node-red implementation. Internet Technology Letters, 2(2), e88.
- Upadhyay, D. and Sampalli, S. (2020). Scada (supervisory control and data acquisition) systems: Vulnerability assessment and security recommendations. Computers & Security, 89, 101666.
- Yadav, G. and Paul, K. (2021). Architecture and security of scada systems: A review. International Journal of Critical Infrastructure Protection, 34, 100433.
- Yang, W., Court, R., and Jiang, J. (2013). Wind turbine condition monitoring by the approach of scada data analysis. Renewable energy, 53, 365-376.