Title :
Upgrade test capability for ±800kV/6250A and ±1100kV/5454A UHVDC valve
Author :
Gao, C.H. ; Zha, K.P. ; Tang, G.F. ; Wang, X.H. ; Wang, G.Y. ; Zhou, J.C.
Author_Institution :
China Electr. Power Res. Inst., Beijing, China
Abstract :
The paper mainly described the upgrade study of UHVDC converter valve type test capability, which will meet all the test requirements of ± 800kV/6250A and ±1100kV/5454A thyristor valves. By optimizing and upgrading rectifier transformer and water-cooled systems, especially that a new synthetic fault test circuit, the operational test capability reaches rated current 7500 A, and fault current peak is 62 kA. In addition, surface electric field intensity on shielding cases of the impulse test equipment is calculated by using Galerkin boundary element method. According to existing conditions, a feasible measure is proposed, which can be employed to decrease electric field dramatically and avoid corona discharge of shielding cases. Another effort in the dielectric test is theoretically analysis and test study for the DC test equipment with rated voltage ±2400kV. Finally, the parameters and results for the ± 800kV/6250A and ±1100kV/5454A prototype will be presented.
Keywords :
Galerkin method; HVDC power convertors; cooling; electric fields; fault currents; impulse testing; power transformer testing; rectifiers; thyristor applications; DC test equipment; Galerkin boundary element method; UHVDC converter valve type upgrade test capability; current 5454 A; current 62 kA; current 6250 A; fault current peak; impulse test equipment shielding case; surface electric field intensity; synthetic fault test circuit; thyristor valve; upgrading rectifier transformer; voltage 1100 kV; voltage 2400 kV; voltage 800 kV; water-cooled system; Dielectrics; Electric fields; Fault currents; HVDC transmission; Test equipment; Thyristors; Valves; dielectric test; operational test; thyristor valve; type test;
Conference_Titel :
Power System Technology (POWERCON), 2014 International Conference on
Conference_Location :
Chengdu
DOI :
10.1109/POWERCON.2014.6993863