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Modular multilevel topological structure based on coupling inductor double step-down type submodule and control method thereof

A modular multi-level, coupled inductance technology, applied to electrical components, output power conversion devices, AC power input conversion to DC power output, etc., can solve the short circuit of DC side capacitors, output AC voltage distortion, and reduce power quality etc. to achieve the effects of reducing voltage distortion rate, improving effectiveness and reliability, and improving dynamic performance

Active Publication Date: 2019-09-17
扬州永茂电力建设有限公司 +1
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Problems solved by technology

[0003] However, the traditional modular multilevel converter uses a half-bridge structure as a sub-module, which has the disadvantage of bridge arm direct connection, that is, when the upper and lower switch tubes of the bridge arm are turned on at the same time, the DC side capacitor is short-circuited, causing system failure
In order to overcome the above shortcomings, it is necessary to introduce a dead zone to ensure that the previous switch is completely turned off and then turn on its complementary switch. However, the dead zone also brings narrow pulses, resulting in distortion of the output AC voltage and reducing the power quality. It is especially serious at high switching frequency, so further improvement of modular multilevel topology is needed to suppress the distortion problem caused by dead zone

Method used

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[0024] The following is a detailed description of the present invention with reference to the drawings.

[0025] Such as figure 1 As shown on the left side of the present invention, the modular multi-level converter topology based on the coupled inductor dual-buck sub-module of the present invention includes two sets of identical coupled inductor dual-buck sub-modules and the coupled inductor L m . Each group of sub-modules includes N sub-modules connected end to end. The first group of sub-modules SM u1 To SM uN Located in the upper bridge arm, and the first sub-module SM U1 Is connected to the positive pole of the external DC system, the second group of sub-module SM l1 To SM lN Located in the lower bridge arm, and the Nth submodule SM lN The tail end is connected to the negative pole of the external DC system. Among them, the external DC system includes a DC voltage source. The Nth submodule SM in the first group of submodules UN Through the coupled inductor L m With the fir...

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Abstract

The invention discloses a modular multilevel topological structure based on a coupling inductor double step-down type submodule and a control method thereof. Each of upper and lower bridge arms of the topological structure respectively comprises N coupling inductor double step-down type sub-modules capable of outputting three levels, so that output voltage distortion caused by bridge arm direct connection and dead zones of a traditional half-bridge sub-module is avoided, and the output electric energy quality and the power density of the converter are effectively improved. In a single-phase topology, the far ends of the upper bridge arm and the lower bridge arm are used as a common direct current end of a converter; the submodules of the upper bridge arm and the lower bridge arm are connected with a coupling inductor in series, and the midpoint of the coupling inductor is led out and connected with an external alternating current system. In addition, in the control method of the topological structure, the voltage loop is used for adjusting a common-mode voltage, the current loop is used for adjusting the common-mode and differential-mode current, and a current loop for controlling the common-mode current of the sub-module is additionally arranged to obtain a certain direct-current bias, so that the sub-module keeps a current continuous working condition, the dynamic performance of the topological structure is improved, and the safe and reliable operation of the topological structure is ensured.

Description

Technical field [0001] The invention belongs to the technical field of high-voltage and high-power power electronics, and mainly relates to a modular multilevel topological structure based on a coupled inductance double-buck sub-module and a control method thereof. Background technique [0002] Modular multi-level converters have a series of advantages such as common DC interface, strong fault tolerance, output voltage close to sine wave, two-way flow of energy and four-quadrant operation, etc., so they are widely used in high voltage DC transmission systems, static reactive power compensation A series of high-voltage and high-power applications such as a series of high-voltage and high-power applications, such as a series of high-voltage and high-power applications such as a series of high-voltage and high-power applications such as the unified power flow controller, medium and high voltage motor drives and active filters. [0003] However, the traditional modular multilevel conve...

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02M7/5387H02M7/483H02M1/38
CPCH02M7/53871H02M7/483H02M1/38H02M1/0025H02M7/4835
Inventor 孙毅超吕丹丁楠木王琦
Owner 扬州永茂电力建设有限公司
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