Title :
Medium Voltage Dynamic Voltage Restorer with Neural Network Controlled Voltage Disturbance Detector
Author :
Chung, Y.H. ; Kim, H.J. ; Kwon, G.H. ; Park, T.B. ; Kim, S.H. ; Kim, K.S. ; Moon, J.I.
Author_Institution :
LS Ind. Syst. R&D Center, Anyang
Abstract :
This paper describes the medium voltage high power DVR (dynamic voltage restorer) with the new voltage disturbance detection method and the real-time digital voltage control. The new voltage disturbance detector was implemented by using the delta rule of the neural network control. Through the proposed method, we can instantaneously obtain the peak value of each phase voltage even under the single phase input voltage conditions. Compared to the conventional synchronous reference frame method, the proposed one shows the minimum time delay to determine the instance of the voltage sag or voltage swell event. Also real-time digital voltage control technique was adopted, where the inverter output filter capacitance voltage, the filter reactor current and the load current are sampled to calculate the inverter PWM command for the next sampling interval. By using digital control, the disturbance voltage can be compensated to the reference voltage level within two sampling intervals. The proposed disturbance detector and the voltage compensator were applied to the medium voltage high power DVR (22.9 kV/4 MVA) that was developed for the application of semiconductor manufacture plant. The performances of the proposed DVR control were verified through computer simulation and experimental results. Finally, conclusions are given.
Keywords :
PWM invertors; digital control; neurocontrollers; power supply quality; power system control; semiconductor device manufacture; voltage control; delta rule; filter reactor current; inverter PWM command; inverter output filter capacitance voltage; load current; medium voltage dynamic voltage restorer; neural network control; neural network controlled voltage disturbance detector; real-time digital voltage control; reference voltage level; semiconductor manufacture plant; voltage sag; voltage swell; Capacitance-voltage characteristics; Delay effects; Detectors; Digital filters; Medium voltage; Neural networks; Pulse width modulation inverters; Sampling methods; Voltage control; Voltage fluctuations; Dynamic Voltage Restorer; Neural Network; Real-time Digital Control; Voltage Sag/Swell;
Conference_Titel :
Power System Technology, 2006. PowerCon 2006. International Conference on
Conference_Location :
Chongqing
Print_ISBN :
1-4244-0110-0
Electronic_ISBN :
1-4244-0111-9
DOI :
10.1109/ICPST.2006.321897