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Five-level self-balanced inverter based on bridge switched capacitor module

A technology of capacitor modules and bridge switches, which is applied in the field of five-level self-balancing inverters, can solve the problems of unbalanced capacitor voltage, restrictions on popularization and application, and the need for large clamp capacitors, etc., so as to reduce the transformation ratio and improve the output waveform quality, the effect of reducing electromagnetic interference

Active Publication Date: 2015-11-18
XIAMEN UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Among them, the flying-span capacitor clamp topology uses clamp capacitors to realize device clamping, which requires a large number of clamp capacitors; in addition, this topology has the problem of capacitor voltage imbalance, so its popularization and application is limited.

Method used

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  • Five-level self-balanced inverter based on bridge switched capacitor module
  • Five-level self-balanced inverter based on bridge switched capacitor module
  • Five-level self-balanced inverter based on bridge switched capacitor module

Examples

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Embodiment Construction

[0033] The present invention will be further elaborated below in conjunction with the accompanying drawings and embodiments.

[0034] refer to figure 1 , figure 2 , figure 1 The five-level self-balancing inverter topology based on the bridge switched capacitor module provided by the present invention, figure 2 It is a bridge switched capacitor module topology. Depend on figure 1 and 2 It can be seen that the five-level inverter organically combines the switched capacitor module and the capacitor clamping circuit, and can be divided into a bridge-type switched capacitor module and two sets of half-bridge circuits in structure.

[0035] The bridge-type switched capacitor module includes an H-bridge and a switched capacitor module. The H-bridge consists of four full-control device MOSFET switch tubes, which are the first high-frequency switch S 1 , the second high frequency switch S 2 , the third high frequency switch S 3 , the fourth high frequency switch S 4 ; The s...

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PUM

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Abstract

The invention discloses a five-level self-balanced inverter based on a bridge switched capacitor module and relates to a multi-level inverter. The five-level self-balanced inverter is provided with the bridge switched capacitor module and two half-bridge circuits. The bridge switched capacitor module is provided with an H bridge and a switched capacitor module. The H bridge is provided with four high-frequency switches S1, S2, S3, and S4. The switched capacitor module is provided with a first capacitor C1a and a second capacitor C1b which are in series connection with a first capacitor network, a third capacitor C2a and a fourth capacitor C2b which are in series connection with a second capacitor network, and four full-controlled devices MOSFET switching tubes S1a, S1b, S2a, and S2b. The two half-bridge circuits are formed by four full-controlled devices MOSFET switching tubes S5, S6, S7, and S8. The five-level self-balanced inverter based on the bridge switched capacitor module may output five levels including 0, +- / 2Ui, and + / -4Ui by controlling switch operating state, and achieves boosted output while outputting the multiple levels.

Description

technical field [0001] The invention relates to a multilevel inverter, in particular to a five-level self-balancing inverter based on a bridge-type switched capacitor module. Background technique [0002] With the extensive application of nonlinear loads and time-varying loads such as power electronic devices in power systems, industries, rail transit, and household appliances, the reactive power and harmonic losses of the power grid are also becoming more and more serious. Reactive power and harmonic loss in the power grid not only lead to a reduction in the efficiency of power generation, transmission and distribution, and power consumption, but also affect the reliability of electrical equipment. In severe cases, it may cause equipment damage and endanger the safe operation of the power grid. The integrated power flow controller (UPFC) and power active filter composed of high-voltage and large-capacity multi-level inverters have become the most direct and effective treatm...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02M7/483H02M7/5387H02M1/42H02M1/44
CPCY02B70/10
Inventor 何良宗程琛黄澜涛曾涛薛文东张建寰
Owner XIAMEN UNIV
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