TY - JOUR
T1 - Enhancing SCADA System Availability
T2 - A Case Study of Microgrid Universidad de Cuenca
AU - Gutiérrez Otavalo, Lourdes Verónica
AU - Padilla Guamán, Claudia Estefanía
AU - Belesaca Mendieta, Juan Diego
AU - Astudillo Salinas, Darwin Fabián
AU - Villa Ávila, Edisson Andrés
N1 - Publisher Copyright:
© 2025, Escuela Superior Politécnica del Litoral. All rights reserved.
PY - 2025/10/15
Y1 - 2025/10/15
N2 - Ensuring the uninterrupted operation of Supervisory Control and Data Acquisition (SCADA) systems is critical for industrial environments that rely on continuous monitoring and control of equipment. However, in the Microgrid Laboratory at the University of Cuenca, routine maintenance procedures have revealed a significant vulnerability: the SCADA system temporarily loses communication and control capabilities when some of the devices are powered down, resulting in forced system downtime. This paper investigates practical strategies to enhance SCADA system availability by addressing this critical limitation. Three hypotheses were explored: first, an issue in network redundancy management; second, with disconnecting of a device from the fiber-optic ring network; and third, programming errors within the LabVIEW-developed SCADA application. Experimental results demonstrated that these approaches, particularly the software-level improvements in LabVIEW, successfully maintained system control and communication during maintenance. The proposed solutions offer a scalable and cost-effective pathway to increase the resilience of SCADA systems in microgrid environments.
AB - Ensuring the uninterrupted operation of Supervisory Control and Data Acquisition (SCADA) systems is critical for industrial environments that rely on continuous monitoring and control of equipment. However, in the Microgrid Laboratory at the University of Cuenca, routine maintenance procedures have revealed a significant vulnerability: the SCADA system temporarily loses communication and control capabilities when some of the devices are powered down, resulting in forced system downtime. This paper investigates practical strategies to enhance SCADA system availability by addressing this critical limitation. Three hypotheses were explored: first, an issue in network redundancy management; second, with disconnecting of a device from the fiber-optic ring network; and third, programming errors within the LabVIEW-developed SCADA application. Experimental results demonstrated that these approaches, particularly the software-level improvements in LabVIEW, successfully maintained system control and communication during maintenance. The proposed solutions offer a scalable and cost-effective pathway to increase the resilience of SCADA systems in microgrid environments.
KW - maintenance
KW - microgrid
KW - OT network
KW - resilience
KW - SCADA
KW - Maintenance
KW - Microgrid
KW - OT network
KW - Resilience
KW - SCADA
UR - https://www.scopus.com/pages/publications/105037057174
UR - https://www.rte.espol.edu.ec/index.php/tecnologica/en/article/view/1357
U2 - 10.37815/rte.v37nE1.1357
DO - 10.37815/rte.v37nE1.1357
M3 - Artículo
SN - 1390-3659
VL - 37
SP - 25
EP - 37
JO - Revista Tecnológica - ESPOL
JF - Revista Tecnológica - ESPOL
IS - E1
ER -