Kim J W, You J S, Cho B H.Input series-output parallel connected converter for high voltage power conversion applications employing charge control[C]. Intersociety Energy Conversion Engineering Conference, 1999: 2593-2599.
[3]
Kim J W, Choi H S, Cho B H. A novel droop method for converter parallel operation[J]. IEEE Transactions on Power Electronics, 2002, 17(1): 25-32.
[4]
Giri R, Ayyanar R, Ledezma E. Input-series and output-series connected modular dc-dc converters with active input voltage and output voltage sharing[C]. IEEE APEC, 2004: 1751-1756.
[5]
Giri R, Ayyanar R, Ledezma E. Input-series and output-series connected modular dc-dc converters with active input voltage and output voltage sharing[C]. IEEE APEC, 2004: 1751-1756.
Ruan X, Cheng L, Zhang T. Control strategy for input-series output-paralleled converter[C]. IEEE PESC, 2006: 238-245.
[8]
Manias S N, Kostakis G. Modular DC-DC converter for high-output voltage applications[J]. IEEE Trans. on Power Electronics, 1993, 140 (2): 97-102.
[9]
Kim J W, You J S, Cho B H. Modeling, control, and design of input-series-output-parallel connected converter for high-speed-train power system[J]. IEEE Trans. on Ind. Electron., 2001, 48(3): 536-544.
Giri R, Ayyanar R, Mohan N. Common duty ratio control of input series connected modular DC-DC converters with active input voltage and load current sharing[C]. IEEE APEC, 2003: 322-326.
[13]
Bhinge A, Mohan N, Giri R, et al. Series parallel connection of dc-dc converter modules with active sharing of input voltage and load current[C]. IEEE APEC, 2002: 648-653.
[14]
Ayyanar R, Giri R, Mohan N. Active input-voltage and load-current sharing in input-series and output-parallel connected modular DC-DC converters using dynamic input-voltage reference scheme[J]. IEEE Trans. on Power Electronics, 2004, 19 (6): 1462-1473.