A coupled-inductor dc-dc converter has several modes of operation in continuous-conduction mode (CCM) and discontinuous-conduction mode (DCM), and is quite complex. This paper presents the derivation of the complete small-signal model of a two-phase interleaved dc-dc boost converter utilizing a single-core coupled-inductor operating in both CCM and DCM. Several small-signal models are required to fully model the converter due to the complexity of the converter operating in DCM. The transfer functions are then derived from these small-signal models. The theoretical analysis is validated experimentally using frequency sweeps from a 1-kW prototype
In this paper, the average input current mode control is proposed for two-phase interleaved boost co...
Peak-current-mode (PCM) control has been very popular control method in power electronic converters....
This paper presents a new non-isolated high step-up topology by connecting two buck-boost DC/DC conv...
This thesis focuses on the complete mathematical modelling and digital closed-loop control of two-ph...
This paper aims to investigate the dynamic behavior of an isolated converter topology suitable for h...
In this paper, an improved reduced-order average modeling method for the bidirectional interleaved b...
In this paper, an improved reduced-order average modeling method for the bidirectional interleaved b...
High step-up ratio DC-DC converters for lowvoltage high-current energy sources are nowadays the focu...
A double-ended forward converter with an input inductor–capacitor filter has inherent power factor c...
This paper analyzes the Interleaved Boost with Coupled Inductors (IBCI) converter, an isolated topol...
Small-signal input characteristics of BUCK and BOOST DC-DC power converters in continuous conduction...
Feasibility of single inductor multiple outputs (SIMO) DC-DC converters, able to operate in continuo...
In this paper, continuous conduction mode (CCM) operation of a class of single inductor multiple out...
[[abstract]]This paper presents an approach to systematically model single-stage dc/dc converters op...
This paper deals with an analysis of four phase interleaved DC-DC converter for higher power applica...
In this paper, the average input current mode control is proposed for two-phase interleaved boost co...
Peak-current-mode (PCM) control has been very popular control method in power electronic converters....
This paper presents a new non-isolated high step-up topology by connecting two buck-boost DC/DC conv...
This thesis focuses on the complete mathematical modelling and digital closed-loop control of two-ph...
This paper aims to investigate the dynamic behavior of an isolated converter topology suitable for h...
In this paper, an improved reduced-order average modeling method for the bidirectional interleaved b...
In this paper, an improved reduced-order average modeling method for the bidirectional interleaved b...
High step-up ratio DC-DC converters for lowvoltage high-current energy sources are nowadays the focu...
A double-ended forward converter with an input inductor–capacitor filter has inherent power factor c...
This paper analyzes the Interleaved Boost with Coupled Inductors (IBCI) converter, an isolated topol...
Small-signal input characteristics of BUCK and BOOST DC-DC power converters in continuous conduction...
Feasibility of single inductor multiple outputs (SIMO) DC-DC converters, able to operate in continuo...
In this paper, continuous conduction mode (CCM) operation of a class of single inductor multiple out...
[[abstract]]This paper presents an approach to systematically model single-stage dc/dc converters op...
This paper deals with an analysis of four phase interleaved DC-DC converter for higher power applica...
In this paper, the average input current mode control is proposed for two-phase interleaved boost co...
Peak-current-mode (PCM) control has been very popular control method in power electronic converters....
This paper presents a new non-isolated high step-up topology by connecting two buck-boost DC/DC conv...