DocumentCode :
1612
Title :
Steady-State and Dynamic Input Current Low-Frequency Ripple Evaluation and Reduction in Two-Stage Single-Phase Inverters With Back Current Gain Model
Author :
Jianhua Wang ; Baojian Ji ; Xuqian Lu ; Xiang Deng ; Fanghua Zhang ; Chunying Gong
Author_Institution :
Sch. of Electr. Eng., Southeast Univ., Nanjing, China
Volume :
29
Issue :
8
fYear :
2014
fDate :
Aug. 2014
Firstpage :
4247
Lastpage :
4260
Abstract :
Due to nonlinear time-varying characteristic of a single-phase dc/ac inverter, its front-end dc/dc converter tends to draw an alternate current ripple current at twice the output frequency, which may cause interaction issues, e.g., stability problem and input ripple current limit in distributed generation systems. A novel method is proposed to evaluate the behavior of low-frequency input current ripple. This approach is based on back current gain Ai (s) (input current to output current) model of the dc/dc converter. The theoretic model with different control schemes is verified in Saber environment. It is indicated and proved that the average current mode control strategy is more effective as compared with linear voltage mode control and open-loop control schemes. Design principles are presented based on Ai (s) as guidelines. Dynamic response with bandwidth limitation is also discussed and improved with proposed proportional-resonant (PR) filter placed based on Ai (s) model. Detail simulation and experiment results for different linear control and nonlinear control strategies, 50 and 400 Hz, buck-type stand-alone two-stage single-phase systems are provided to verify the proposed back current gain model and PR-filter solutions.
Keywords :
DC-AC power convertors; DC-DC power convertors; distributed power generation; invertors; nonlinear control systems; open loop systems; power filters; PR filter; PR-filter solutions; average current mode control strategy; back current gain; back current gain model; buck-type stand-alone two-stage single-phase systems; distributed generation systems; dynamic input current low-frequency ripple evaluation; dynamic response; front-end dc-dc converter; linear control strategies; linear voltage mode control; nonlinear control strategies; nonlinear time-varying characteristic; open-loop control schemes; proportional-resonant filter; single-phase dc-ac inverter; steady-state input current low-frequency current ripple evaluation; two-stage single-phase inverters; Band-pass filters; Bandwidth; DC-DC power converters; Educational institutions; Impedance; Inverters; Transfer functions; Average current mode control (ACMC); back current gain; band-pass filter; bandwidth limitation; input current low-frequency ripple; interaction; notch filter; proportional-resonant filter;
fLanguage :
English
Journal_Title :
Power Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0885-8993
Type :
jour
DOI :
10.1109/TPEL.2013.2292609
Filename :
6675846
Link To Document :
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