Title :
Real time substation distributed control system simulator development based on IEC 61850 standard for a sample substation (case study: Sheikh bahayi substation 400/230/63KV)
Author :
Montazeri, Mina ; Alavi, Azadeh ; Rahmat Jou, Hosein ; Mehr Ardestani, Jalaleddin ; Jadali Pour, Hamed
Author_Institution :
Fac. of Electr. & Comput. Eng., Shahid Beheshti Univ., Tehran, Iran
Abstract :
In this paper a real time simulator of distributed control system (DCS) is developed according to IEC 61860 standard. IEC 61850 is the most important standard used in Smart Grid. In the first part, different parts of the control system is modeled and simulated according to IEC 61850 standard. For the modeling and simulation of communication network protocols which are based on the mentioned standard (GOOSE and INDUSTRIAL ETHERNET), OMNeT++ simulation platform is applied. HMI pages of the simulator which are completely in line with the main control system, has been developed using .NET framework. The developed simulator may be used in evaluating IEC 61860 standard and in educating operators of high voltage substations. Additionally primary equipment such as transformers, breakers, disconnectors and the secondary equipment such as distance relays and differential relays has been also modeled and simulated in MATLAB/Simulink.
Keywords :
IEC standards; circuit breakers; distributed control; power transformers; relays; smart power grids; substations; DCS; GOOSE; HMI pages; IEC 61850 standard; IEC 61860 standard; MATLAB-Simulink; OMNeT++ simulation platform; Sheikh bahayi substation; breakers; communication network protocols; differential relays; disconnectors; distance relays; high voltage substations; industrial Ethernet; real time substation distributed control system simulator development; secondary equipment; smart grid; standard; transformers; voltage 230 kV; voltage 400 kV; voltage 63 kV; IEC standards; Mathematical model; Protocols; Software; Substation automation; DCS; IEC 61850; OMNeT++; high voltage substation; real time simulator;
Conference_Titel :
Smart Grid Conference (SGC), 2013
Conference_Location :
Tehran
Print_ISBN :
978-1-4799-3039-5
DOI :
10.1109/SGC.2013.6733820