DocumentCode :
3581031
Title :
Modeling and simulation research of large-scale AC/DC hybrid power grid based on ADPSS
Author :
Liu Zhi-hui ; Wang Yi ; Chen Jian-min ; Guo Ya-rong ; Wang Xing-guo ; Li Zhong-qing ; Du Ding-xiang ; Li Xiao
Author_Institution :
China Electr. Power Res. Inst., Beijing, China
fYear :
2014
Firstpage :
1
Lastpage :
6
Abstract :
With the continuous increasing load and construction of UHV, A plurality of EHV / UHV AC and DC transmission lines centralize in the load center. In order to analyze the interactive effects of AC or DC system when fault occurs, a hybrid simulation model on electromechanical and electromagnetic transient process of AC and DC is established for regional power grid. The electromagnetic transient model covers the EHV / UHV AC and DC transmission lines, EHV / UHV transformer and lots of generators. Various faults are simulated in four network partitions, including all kinds of AC and DC transmission faults. On the basis of simulation, the characteristics and interactive effects of AC and DC system is studied. Research results suggest that for load center with both DC and AC, AC system faults will cause multiple HVDC commutation failure, thereby affecting the performance of AC relay protection. For the power grid closely connected, the DC system blocking will not cause any problem on system stability.
Keywords :
HVDC power transmission; hybrid power systems; power grids; power system simulation; power transmission faults; AC relay protection; AC transmission faults; AC transmission lines; ADPSS; DC system blocking; DC transmission faults; DC transmission lines; EHV/UHV transformer; electromagnetic transient process; hybrid simulation model; large-scale AC/DC hybrid power grid; load center; regional power grid; Electromagnetics; HVDC transmission; Load modeling; Power grids; Power system stability; Power transmission lines; Stability analysis; AC / DC hybrid grid; electromechanical and electromagnetic hybrid simulation; full digital real time simulation platform for electric power system (ADPSS);
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Power and Energy Engineering Conference (APPEEC), 2014 IEEE PES Asia-Pacific
Type :
conf
DOI :
10.1109/APPEEC.2014.7066047
Filename :
7066047
Link To Document :
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