A Bridgeless Double Boost Power Factor Correction Rectifier with Alternate Left and Right Auxiliary Commutation

A power factor correction and rectifier technology, which is applied in the direction of converting AC power input to DC power output, output power conversion device, high-efficiency power electronic conversion, etc. No problems such as clamping measures, to achieve the effect of reducing volume and reducing voltage stress

Active Publication Date: 2021-11-19
SHANXI UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

However, there are three types of problems in the ZVT-2CI inverter series: 1) When the switch ZCS of the auxiliary circuit is turned on, only EOSS can be used, that is, the IGBT device with a small equivalent output capacitor energy storage, and the conduction loss and EMI cannot be ignored; 2) The unidirectional reset of the excitation current leads to the large volume of the transformer magnetic core selected, and two sets of auxiliary circuits are required to realize the auxiliary commutation work of the main switch under the bidirectional current output; 3) The auxiliary commutation diode has no clamping measures, and the overcharge vibration Bells cause high voltage stress and EMI
4) In high-frequency applications, under the small duty cycle of the main circuit, the commutation preparation time is insufficient

Method used

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  • A Bridgeless Double Boost Power Factor Correction Rectifier with Alternate Left and Right Auxiliary Commutation
  • A Bridgeless Double Boost Power Factor Correction Rectifier with Alternate Left and Right Auxiliary Commutation
  • A Bridgeless Double Boost Power Factor Correction Rectifier with Alternate Left and Right Auxiliary Commutation

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Embodiment Construction

[0194] The present invention provides a bridgeless double Boost power factor correction rectifier with alternate left and right auxiliary commutation, including a first main switching tube S 1 , the second main switch S 2 , the third main switch S 3 , the fourth main switch S 4 , filter inductance T f1 , filter inductance T f2 , AC power supply V AC , DC power supply V DC , Auxiliary power supply V AUX , the first commutation diode D N1 , the second commutation diode D N2 , the third commutation diode D N3 , the fourth commutation diode D N4 , Auxiliary converter transformer primary winding T 1 , Transformer secondary winding T 2 , Auxiliary converter transformer secondary winding T 3 , Auxiliary transformer secondary winding T 4 , Auxiliary converter transformer secondary winding T 5 , Resonant inductance L r1 , Resonant inductance L r2 , the first auxiliary switch tube S a1 , the second auxiliary switch tube S a2 , the third auxiliary switch tube S a3 , th...

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Abstract

The invention discloses a bridgeless double Boost power factor correction rectifier with left and right alternate auxiliary commutation, which can realize ZVS conduction of a main circuit switch and an auxiliary circuit switch. The fully controlled switch replaces the rectifier diode of the basic bridgeless circuit, and the main circuit has two charging states. The alternately working auxiliary circuit realizes the bidirectional reset of the excitation current, thus reducing the volume of the transformer magnetic core. The secondary winding coupling of the transformer reduces the voltage stress of the auxiliary commutation diode.

Description

technical field [0001] The invention relates to the technical field of power electronic conversion, in particular to a bridgeless double Boost power factor correction rectifier with left and right alternate auxiliary commutation. Background technique [0002] Among many PFC circuits, Boost converters are widely used because of their simple structure, continuous input current and strong uniformity of characteristics. Among them, the bridgeless Boost PFC reduces the conduction loss by reducing the number of semiconductor devices on the working circuit, so as to improve the efficiency. However, the problem of switching loss in bridgeless PFC is prominent. When the switching frequency is increased, the switching loss in the circuit will increase accordingly, especially when the circuit works in CCM, the reverse recovery current of the freewheeling diode will increase the switching Turn-on loss of the tube. In order to reduce switching loss and dynamic switching stress, and ach...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02M7/217H02M7/219H02M1/42
CPCH02M1/4208H02M7/217H02M7/219H02M1/0058Y02B70/10
Inventor 禹健安永泉郭凤琴荆蕊蕊
Owner SHANXI UNIV
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