Capacitor-clamped three-level dual-buck half-bridge inverter

A half-bridge inverter, three-level technology, applied in electrical components, conversion devices for converting AC power input to DC power output, and output power, etc. Problems such as voltage equalization in steady state and transient process, inconsistent device parameters, etc., to achieve the effect of reliable and easy solution, reduced efficiency, and reduced switching frequency of devices

Inactive Publication Date: 2010-12-01
NANJING UNIV OF AERONAUTICS & ASTRONAUTICS
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  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Due to the limitation of device manufacturing technology, the withstand voltage of power semiconductor devices has a certain limit, resulting in the device withstand voltage and power conversion voltage. level conflict
In high-voltage converters, using power tubes in series is a solution, but due to the inconsistency of device parameters and asynchronous switching transients, it is difficult to achieve voltage equalization in steady-state and transient processes, resulting in over-voltage of individual power tubes. voltage, reducing circuit reliability

Method used

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  • Capacitor-clamped three-level dual-buck half-bridge inverter
  • Capacitor-clamped three-level dual-buck half-bridge inverter
  • Capacitor-clamped three-level dual-buck half-bridge inverter

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Embodiment Construction

[0011] Such as figure 1 As shown, the capacitor-clamped three-level double-buck half-bridge inverter of this embodiment is characterized in that, in the first three-level step-down circuit 1, the first power switch tube S 1 The drain of the first external power supply U 1 The positive terminal connection of the first power switch tube S 1 The source of the third power switch S 3 The drain connection of the third power switch tube S 3 source of the first power diode D 1 The cathode connection of the first power diode D 1 The anode of the third power diode D 3 The cathode connection of the third power diode D 3 The anode of the second external power supply U 2 connected to the negative terminal, the first inductor L 1 One end of is connected to the third power switch tube S 3 source of the first power diode D 1 between the cathodes, the first clamping capacitor C 1 The positive pole of is connected to the first power switch tube S 1 The source of the third power swit...

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Abstract

The invention discloses a capacitor-clamped three-level dual-buck half-bridge inverter which comprises a first three-level duck circuit, a second three-level duck circuit, a direct-current power-supply input circuit and a load circuit, wherein each three-level duck circuit comprises two power switching tubes, two power diodes, a clamping capacitor and an inductor, and +1, -1 and 0 three-state levels are output by an inverter bridge under the actions of controlling the switching tubes and clamping the clamping capacitor, thereby realizing the three-level dual-buck half-bridge inverter. The invention has the advantages that the advantage that a DBI circuit has not problems of through bridge arms or backward recovery of switching tube body diodes is inherited; the advantage that a three-level convertor per se has small output voltage harmonic content is reserved; compared with a traditional half-bridge inverter, the voltage stress of power devices is reduced; and the whole circuit structure is simpler and easy to realize.

Description

1. Technical field [0001] The invention relates to an inverter, in particular to a capacitor-clamped three-level double-buck half-bridge inverter. 2. Background technology [0002] Dual Buck Inverter (hereinafter referred to as DBI) is a new type of inverter topology that has emerged in recent years. Compared with traditional inverter topologies such as push-pull and full bridge, DBI has outstanding advantages such as no bridge arm shoot-through hazard and no switch body diode reverse recovery problem, and is suitable for aerospace and other inverter reliability requirements. High occasions. DBI provides a simple way to realize the high reliability and high efficiency of the inverter at the same time, and it is a topological structure with important research value and broad development prospects. DBI has some similarities with traditional half-bridge inverters. DBI needs to introduce a half-bridge input mode. The amplitude of the external positive and negative DC bus volta...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02M7/483H02M1/12
Inventor 陈春柳洪峰王成华刘苗
Owner NANJING UNIV OF AERONAUTICS & ASTRONAUTICS
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