DocumentCode
690754
Title
Ride-through for important auxiliary equipment drive inverter
Author
Xiaoyu Wang ; Tao Zhang ; Shu Liu ; Qixun Yang
Author_Institution
State Key Lab. of New Energy Power Syst., North China Electr. Power Univ., Beijing, China
fYear
2013
fDate
8-11 Dec. 2013
Firstpage
1
Lastpage
5
Abstract
Voltage sag or instant power loss often happens in power supply system in the thermal power plant. Aiming at settling the problem of the serious power plant accidents that the low voltage protection of the inverter is blocked, boiler main fuel is tripped, auxiliary equipment is stopped, and the generator units is non-planed acted by voltage instability, the inverter low voltage ride through power(ILP) is researched and developed. It is composed of multiphase and multiple boost hardware topology, the fast detection of grid voltage sag and the single neuron PID control strategy that is formed by taking values of output error square as performance index and so on. The simulation result can be referenced during the choosing of ILP hardware electrical parameters and control strategy of software. The simulation and test result show that ILP has superior dynamic and static output characteristics and the problem of low voltage ride through of inverter can be successfully settled.
Keywords
electric drives; electrical accidents; invertors; power apparatus; power grids; power supply quality; three-term control; voltage control; ILP hardware electrical parameter; accident; auxiliary equipment drive inverter; boiler; dynamic output characteristics; fuel tripping; grid voltage sag detection; instant power loss; inverter low voltage ride through power; low voltage protection; multiphase multiple boost hardware topology; power supply system; single neuron PID control strategy; static output characteristics; thermal power plant; voltage instability; Generators; Inverters; Low voltage; Neurons; Power generation; Voltage control; Voltage fluctuations; fast detection of grid voltage sag; inverter low-voltage ride-through power; multiphase and multiple technology; single neuron PID;
fLanguage
English
Publisher
ieee
Conference_Titel
Power and Energy Engineering Conference (APPEEC), 2013 IEEE PES Asia-Pacific
Conference_Location
Kowloon
Type
conf
DOI
10.1109/APPEEC.2013.6837259
Filename
6837259
Link To Document