APPLICATION OF THE SA-RT METHOD TO SUPERVISORY SYSTEMS
Mohamed Najeh Lakhoua
Abstract
Mohamed Najeh Lakhoua
Abstract
After a presentation of the functionality of the supervisory control and data acquisition system (SCADA), we present the issues involved in the application of a Functional Analysis (FA) technique on a supervisory system of a complex process. In order to deal with these issues, we present a practical case of a SCADA system of a thermal power plant (TPP) in Tunisia. Our contribution consists on applying a FA technique SA-RT (Structured Analysis Real Time). This technique allows a functional description of the SCADA system. The paper briefly discusses the functions of the SCADA system and some advantages of the application of the FA for the design of a supervisory system. Then the basic principles of the SA-RT technique applied on the SCADA system are presented. Finally, the different results obtained from the SA-RT technique are discussed.
OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
After a presentation of the functionality of the supervisory control and data acquisition system (SCADA), we present the issues involved in the application of a Functional Analysis (FA) technique on a supervisory system of a complex process. In order to deal with these issues, we present a practical case of a SCADA system of a thermal power plant (TPP) in Tunisia. Our contribution consists on applying a FA technique SA-RT (Structured Analysis Real Time). This technique allows a functional description of the SCADA system. The paper briefly discusses the functions of the SCADA system and some advantages of the application of the FA for the design of a supervisory system. Then the basic principles of the SA-RT technique applied on the SCADA system are presented. Finally, the different results obtained from the SA-RT technique are discussed.
Key concepts: SCADA, Supervisory control, Process (computing), Computer science, Control engineering, Embedded system, Reliability engineering, Systems engineering