A ZVS modulation method for a three-phase four-wire ZVS inverter

A zero-voltage switch, three-phase four-wire system technology, applied in the direction of irreversible DC power input conversion to AC power output, high-efficiency power electronic conversion, electrical components, etc., can solve the problem of reducing circuit efficiency, electromagnetic interference, and large filtering device and other issues

Active Publication Date: 2019-03-12
ZHEJIANG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The circuit works in a hard switching state, there is a diode reverse recovery phenomenon, and the switching loss of the converter device is large, which limits the improvement of the operating frequency, resulting in the need for a larger filter, which reduces the circuit efficiency and has electromagnetic interference.

Method used

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  • A ZVS modulation method for a three-phase four-wire ZVS inverter
  • A ZVS modulation method for a three-phase four-wire ZVS inverter
  • A ZVS modulation method for a three-phase four-wire ZVS inverter

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Embodiment Construction

[0054] The present invention will be described in detail below in conjunction with the accompanying drawings.

[0055] refer to figure 1 , the three-phase four-wire zero-voltage switching inverter consists of six anti-parallel fully-controlled main switches S a1 ,S a2 ,S b1 ,S b2 ,S c1 ,S c2 The three-phase bridge arms formed are respectively connected to the output midpoints A, B, C of each phase bridge arm and the load R a , R b , R c The output inductance between L a , L b , L c , the output capacitor C connected across the load a0 ,C b0 ,C c0 , two DC bus capacitors C connected between the positive and negative terminals of the DC bus on the input side of the three-phase bridge arm dc1 ,C dc2 , connected to the midpoint of the positive and negative bus capacitance 0, the midpoint of the output capacitor and the neutral line of the load midpoint, the six fully-controlled main switches of the three-phase bridge arm are respectively connected in parallel with t...

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Abstract

The invention discloses a zero-voltage switch modulation method of a three-phase four-wire system zero-voltage switch inverter. The modulation method compares the three-phase main switch modulation wave of the three-phase four-wire zero-voltage switching inverter with the sawtooth carrier, and then generates the main switch signal through the inverter and the rising edge delay module, and converts the three-phase four-wire zero-voltage switching The auxiliary switch modulation wave of the voltage switch inverter is compared with the sawtooth carrier, and then the bridge arm through signal and the auxiliary switch signal are generated by the rising edge delay module, the inverter and the falling edge delay module. In the three-phase four-wire zero voltage switch During the commutation period of the fully-controlled main switch of the inverter, the through signal is applied to the fully-controlled main switch to provide a freewheeling circuit for the magnetization of the resonant inductor to store sufficient resonance energy. The invention has a simple structure, can realize full-range soft switching in the power frequency cycle, realizes zero-voltage turn-on of all switching devices, has small switching loss, high circuit efficiency, can suppress reverse recovery of diodes, and reduces electromagnetic interference.

Description

technical field [0001] The invention relates to a three-phase inverter and its modulation method, in particular to a zero-voltage switching modulation method for a three-phase four-wire zero-voltage switching inverter. Background technique [0002] The inverter is a device that converts direct current into alternating current. A common topology such as a three-phase four-wire inverter consists of six fully-controlled main switches (S a1 ,S a2 ,S b1 ,S b2 ,S c1 ,S c2 ) composed of three-phase bridge arms, which are respectively connected to the output midpoint (A, B, C) of each phase bridge arm and the load (R a , R b , R c ) between the output inductance (L a , L b , L c ), the output capacitor connected across the load (C a0 ,C b0 ,C c0 ), two DC bus capacitors (C dc1 ,C dc2 ), connected to the midpoint of the positive and negative bus capacitors (0), the midpoint of the output capacitor and the midpoint of the load. The circuit works in a hard switching sta...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): H02M7/48H02M7/5387H02M1/44
CPCH02M1/44H02M7/4826H02M7/53875H02M1/0058H02M7/4818Y02B70/10
Inventor 徐德鸿何宁朱应峰
Owner ZHEJIANG UNIV
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