IEEE Transactions on Industry Applications · 2006 · 306 citations · 18 references
Electrical EngineeringEngineeringDc MicrogridsModular Dc-dc ConvertersLow VoltagePower Electronics ConverterCommon-duty-ratio ControlActive Input VoltageElectric Power ConversionModular ConvertersDistributed Control SystemPower System ControlForward ConverterPower ElectronicsPower Inverter
This paper proposes a simple control method to achieve active sharing of input voltage and load current among modular converters that are connected in series at the input and in parallel at the output. The input-series connection enables a fully modular power-system architecture, where low voltage and low power modules can be connected in any combination at the input and/or at the output, to realize any given specifications. Further, the input-series connection enables the use of low-voltage MOSFETs that are optimized for very low R/sub DSON/, thus, resulting in lower conduction losses. In the proposed scheme, the duty ratio to all the converter modules connected in input-series and output-parallel (ISOP) configuration is made common. This scheme does not require a dedicated input-voltage or load-current-share controller. It relies on the inherent self-correcting characteristic of the ISOP connection when the duty ratio of all the converters is the same. The proposed scheme is analyzed using the average model of a forward converter. The stability and performance of the scheme are verified through numerical simulation, both in frequency domain and in time domain. The proposed control method is also validated on an experimental prototype ISOP system comprising of two forward converters.
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A classification and evaluation of paralleling methods for power supply modules
Shiguo Luo, Zhihong Ye, Ray‐Lee Lin et al. · 2003 · 388 citations
Raja Ayyanar, R. Giri, Ned Mohan · IEEE Transactions on Power Electronics · 2004 · 322 citations