DocumentCode
1437149
Title
Establishment of a Switched-Reluctance Generator-Based Common DC Microgrid System
Author
Yuan-Chih Chang ; Chang-Ming Liaw
Author_Institution
Dept. of Electr. Eng., Nat. Tsing Hua Univ., Hsinchu, Taiwan
Volume
26
Issue
9
fYear
2011
Firstpage
2512
Lastpage
2527
Abstract
This paper presents a dc microgrid including a switched-reluctance generator (SRG) with isolated boost dc-dc converter, a battery energy storage system, and a single-phase three-wire (1P3W) load inverter for generating ac 220/110 V 60-Hz outputs. The 400-V dc grid is established by the SRG with dc 48-V output followed by a current-fed push-pull (CFPP) dc-dc converter. The robust commutation and dynamic control schemes are developed for the SRG to have excellent output performances. For providing the domestic load power sources, a 1P3W transformerless 220/110 V inverter is established. A master and slave robust control schemes are proposed to yield balanced sinusoidal output voltage waveforms in both voltage outputs under varying load conditions. To improve the dc grid power supporting reliability, a battery energy storage system with bidirectional buck-boost interfacing converter is established. It can support the common dc bus voltage immediately when the main power source fault occurs. Conversely, the battery bank can be charged from the common dc bus through the same converter. Particularly, an auxiliary charger formed by a flyback switch-mode rectifier is equipped to allow the battery to be charged from the plug-in utility power as the long duration of microgrid fault occurs. Normal operation and good operating performance of the established microgrid are verified experimentally.
Keywords
DC-DC power convertors; battery storage plants; commutation; distributed power generation; invertors; power distribution control; power distribution faults; power distribution reliability; power grids; rectifying circuits; reluctance generators; robust control; 1P3W transformerless load inverter; CFPP DC-DC converter; auxiliary charger; balanced sinusoidal output voltage waveform; battery bank; battery energy storage system; bidirectional buck-boost interfacing converter; common DC bus voltage; current-fed push-pull dc-dc converter; domestic load power source; dynamic control scheme; flyback switch-mode rectifier; frequency 60 Hz; isolated boost DC-DC converter; microgrid fault; plug-in utility power; power source fault; robust commutation; robust control scheme; single-phase three-wire transformerless load inverter; switched-reluctance generator-based common DC microgrid system; voltage 110 V; voltage 220 V; voltage 400 V; voltage 48 V; Batteries; Converters; Inverters; Robustness; Switches; Voltage control; Battery energy storage system; buck–boost converter; commutation tuning; current-fed push–pull (CFPP) converter; flyback switch-mode rectifier (SMR); inverter; microgrid; robust control (RC); switched-reluctance generator (SRG); voltage control;
fLanguage
English
Journal_Title
Power Electronics, IEEE Transactions on
Publisher
ieee
ISSN
0885-8993
Type
jour
DOI
10.1109/TPEL.2011.2109013
Filename
5703133
Link To Document