Title :
Wireless Input-Voltage-Sharing Control Strategy for Input-Series Output-Parallel (ISOP) System Based on Positive Output-Voltage Gradient Method
Author :
Wu Chen ; Guangjiang Wang ; Xinbo Ruan ; Wei Jiang ; Wei Gu
Author_Institution :
Jiangsu Provincial Key Lab. of Smart Grid Technol. & Equip., Southeast Univ., Nanjing, China
Abstract :
An input-series output-parallel (ISOP) system, in which multiple converter modules are connected in series at the input sides and parallel at the output side, is very suitable for high input-voltage, low output-voltage, and high output-current applications. Input-voltage sharing (IVS) and output-current sharing of the constituent modules among the ISOP system must be ensured. The existing IVS control strategies have drawbacks of lower reliability and lower modularity. In this paper, we propose a wireless IVS control strategy for ISOP systems based on positive output-voltage gradient method, which can effectively improve the reliability and modularity of ISOP systems. First, the operation principle of the proposed control strategy is introduced, and the IVS performance and output-voltage regulation characteristics of ISOP systems are analyzed. The stability of the proposed control strategy is also explored. A three-module ISOP system prototype is fabricated and tested in the laboratory, and the experimental results verify the effectiveness of the proposed control strategy.
Keywords :
gradient methods; power convertors; voltage control; IVS control strategies; constituent modules; input-series output-parallel system; input-voltage sharing; multiple converter modules; output-current sharing; output-voltage regulation characteristics; positive output-voltage gradient method; three-module ISOP system prototype; wireless input-voltage-sharing control strategy; Accuracy; Gradient methods; Stability analysis; Voltage control; Wireless communication; Wireless sensor networks; Input-series output-parallel (ISOP); input-voltage sharing (IVS); positive output-voltage gradient method; stability; wireless;
Journal_Title :
Industrial Electronics, IEEE Transactions on
DOI :
10.1109/TIE.2014.2308147