A Circular Current Suppression Method for Modular Multilevel Converter

A modular multi-level, circulating current suppression technology, applied in the direction of converting AC power input to DC power output, electrical components, output power conversion devices, etc., can solve the unbalanced bridge arm voltage, unfavorable engineering practical problems, calculation process complex problems, to achieve the effect of reducing energy loss, facilitating energy shaping and damping injection

Active Publication Date: 2020-12-22
SHANGHAI UNIVERSITY OF ELECTRIC POWER
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Problems solved by technology

Due to the cutting in and out of each sub-module, it is difficult to achieve a complete balance of the capacitor voltage of the sub-module, causing the voltage imbalance between the bridge arms, and then forming a circulating current between the three phases of the MMC. The existence of the circulating current will make the current peak value and effective value of the bridge arm increase, which will eventually affect the safe and stable operation of the system, so it is necessary to suppress the circulation of MMC
[0003] The traditional MMC circulation suppression method usually adopts the li

Method used

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  • A Circular Current Suppression Method for Modular Multilevel Converter
  • A Circular Current Suppression Method for Modular Multilevel Converter
  • A Circular Current Suppression Method for Modular Multilevel Converter

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Embodiment Construction

[0073] The present invention will be described in detail below in conjunction with the accompanying drawings and specific embodiments.

[0074] Such as figure 2 As shown, a method for suppressing circulating current of a modular multilevel converter includes the following steps:

[0075] S1. According to the single-phase equivalent circuit of MMC, and based on the positive definite quadratic energy function, the PCHD model of the MMC circulation is obtained;

[0076] S2. Using the passive control theory, construct the MMC circulation suppression passive controller based on the PCHD model;

[0077] S3. Input the double frequency actual value and reference value of the circulating current into the MMC circulating current suppression passive controller to output the circulating current voltage compensation amount;

[0078] S4. Perform carrier phase-shift modulation on the circulating current voltage compensation amount to generate a modulation wave, and control the working sta...

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Abstract

The invention relates to a method for suppressing circulating current of a modular multilevel converter, comprising the following steps: S1, obtaining a PCHD model of MMC circulating current based on a single-phase equivalent circuit of MMC and based on a positive definite quadratic energy function; S2, Construct the MMC circulating current suppression passive controller based on the PCHD model; S3, input the double frequency actual value and reference value of the circulating current into the MMC circulating current suppressing passive controller to output the circulating current voltage compensation amount; S4, carry out the calculation of the circulating current voltage compensation amount Carrier phase-shift modulation controls the working state of the IGBTs in the sub-modules of the bridge arms of each phase of the MMC through modulation waves. Compared with the prior art, the present invention is based on the PCHD model and passive control theory, from the perspective of energy, through energy function shaping and control correction system performance, effectively ensuring the asymptotic stability of the MMC circulation system, and the control law form is simple and robust Strong resistance, obvious circulation suppression effect, easy to solve practical engineering problems.

Description

technical field [0001] The invention relates to the control field of modular multilevel converters, in particular to a method for suppressing circulation of modular multilevel converters. Background technique [0002] Modular multilevel converter (MMC) is widely used in large-scale renewable energy grid connection due to its advantages of low harmonic content, low switching loss, strong fault ride-through capability, easy modular expansion and industrial production. field. Taking the three-phase system as an example, such as figure 1 As shown, each phase of MMC includes two upper and lower bridge arms, each bridge arm is composed of N identical sub-modules sm cascaded, and each bridge arm is connected in series with a bridge arm inductance L m and arm resistance R m , the submodule sm includes two IGBTs (S 1 , S 2 ) and two antiparallel diodes (D 1 、D 2 ) and a capacitor C. By controlling the on and off of the two IGBTs through the pulse signal, the output voltage of...

Claims

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Application Information

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IPC IPC(8): H02M7/483
CPCH02M7/483H02M1/0038
Inventor 薛花王育飞潘哲晓杨兴武张宇华田广平
Owner SHANGHAI UNIVERSITY OF ELECTRIC POWER
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