Title :
InfiniBand-Based Real-Time Simulation of HVDC, STATCOM and SVC Devices with Custom-Of-The-Shelf PCs and FPGAs
Author :
Dufour, Christian ; Abourida, Simon ; Belanger, Jean
Author_Institution :
Opal-RT Technol., Montreal, Que.
Abstract :
This paper presents a real-time simulator for large power network based on custom-of-the-shelf technologies, all embedded in the RT-LAB real-time simulation platform. This platform uses Pentium, Xeon, opteron-based PCs (multi-CPUs and/or dual-core configurations) or even Xilinx FPGA cards for computational engines and InfiniBand communication fabric for fast inter-PCs communications. The real-time PCs runs under well-known operating systems QNX or RedHawk Linux while the main user control interface is either Simulink or LabView. The paper demonstrates the real-time simulation of complete single-pole 12-pulse HVDC system on dual-CPU, dual-core 2.2 GHz Opteron PC under 15 microseconds time step. It also demonstrates the real-time simulation of complex power system devices like SVC, STATCOM and more general power systems like the Kundur network. The paper also discusses the latest advances in hardware-in-the-loop simulation like the possibility to program from within Simulink some controllers or devices, like a PMSM drive, directly in an FPGA card. This feature is enabled in RT-LAB by the use of Xilinx System Generator, a Simulink blockset. This FPGA targeting diminishes further the leap between prototype and production-type controller systems because the FPGA can implement rapidcontrol functions along with fast protection systems, like IGBT-current protection, of real controller
Keywords :
HVDC power transmission; field programmable gate arrays; insulated gate bipolar transistors; power engineering computing; static VAr compensators; 2.2 GHz; FPGA; HVDC system; IGBT-current protection; InfiniBand-based real-time simulation; Kundur network; LabView; PMSM drive; Pentium; STATCOM; SVC devices; Simulink; Xeon; Xilinx FPGA cards; complex power system devices; dual-core configurations; hardware-in-the-loop simulation; production-type controller systems; protection systems; Automatic voltage control; Computational modeling; Control systems; Field programmable gate arrays; HVDC transmission; Personal communication networks; Power system simulation; Protection; Real time systems; Static VAr compensators;
Conference_Titel :
Industrial Electronics, 2006 IEEE International Symposium on
Conference_Location :
Montreal, Que.
Print_ISBN :
1-4244-0496-7
Electronic_ISBN :
1-4244-0497-5
DOI :
10.1109/ISIE.2006.295884