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Single-phase full-bridge inverter parallel operation method

The technology of a full-bridge inverter and its operating method is applied in the direction of converting AC power input into DC power output, output power conversion device, electrical components, etc., and can solve current distortion, bridge arm short-circuit through, two inverter current Unbalance and other problems, to achieve the effect of no current distortion, reliable operation, high efficiency and low loss parallel operation

Active Publication Date: 2019-01-11
SICHUAN UNIV
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  • Claims
  • Application Information

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Problems solved by technology

[0002] Solar energy is one of the most important renewable energy sources, and it has been applied in large-scale centralized photovoltaic power plants and distributed photovoltaic power generation systems; the output point of photovoltaic panels is direct current, and it is necessary to convert direct current into alternating current before photovoltaic power generation is connected to the large power grid. The voltage source inverter that converts DC to AC is a key component in a photovoltaic power generation system; due to its advantages in redundancy and capacity control flexibility, compared with single-phase parallel inverters using a common DC bus and an AC bus The use of a single centralized inverter has more application prospects; for the single-inductance full-bridge inverter widely used in industry, under the condition of parallel operation, when the carrier signals of the two inverters are not synchronized, There will be a short-circuit problem in the non-filtering inductance bridge arms of the two inverters; therefore, it cannot generally be used in the parallel operation of the common AC bus and the common DC bus; the two bridge arms of the full-bridge inverter are separated The single-phase grid-connected inverter topology of the inductor can avoid the shoot-through problem in the parallel operation process; however, there may be a circulating current problem in the parallel operation of the converters in the single-inductor and split-inductor mode, resulting in current imbalance between the two inverters , some severe cases will make the current distortion serious

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  • Single-phase full-bridge inverter parallel operation method
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  • Single-phase full-bridge inverter parallel operation method

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Embodiment Construction

[0026] The present invention will be further described below in conjunction with the accompanying drawings and specific embodiments.

[0027] Such as Figure 1-3 As shown, a single-phase full-bridge inverter parallel operation method includes the following steps:

[0028] The DC bus and AC bus of the full bridge inverter are set in parallel;

[0029] Set a current sensor before the filter inductor on the AC side of each inverter;

[0030] Each inverter has an independent controller;

[0031] The current sensors are arranged alternately, that is, the left bridge arm of the odd-numbered inverter and the right bridge arm of the even-numbered inverter or the right bridge arm of the odd-numbered inverter and the right bridge arm of the even-numbered inverter left bridge arm.

[0032] Further, the controller adopts a unipolar pulse width modulation method.

[0033] Further, the inverter has two main circuit topologies and configurations such as figure 1 shown; where U dc 、C ...

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Abstract

The invention provides a single-phase full-bridge inverter parallel operation method, comprising the following steps the DC bus bar and the AC bus bar of the full-bridge inverter are arranged in parallel; a current sensor is arranged in front of the filter inductor on the AC side of each inverter; Each inverter has an independent controller. The current sensor is interleaved, the is, the left bridge arm of the odd-numbered inverter and the right bridge arm of the even-numbered inverter or the right bridge arm of the odd-numbered inverter and the left bridge arm of the even-numbered inverter. The invention realizes the parallel operation of the full-bridge inverter with high efficiency and low loss, avoids the current imbalance problem caused by circuit parameter error, sampling error, signal conversion error, controller precision, and the like, and ensures the reliable operation of the converter system.

Description

technical field [0001] The invention relates to the technical field of photovoltaic power generation and converter control, in particular to a method for parallel operation of single-phase full-bridge inverters. Background technique [0002] Solar energy is one of the most important renewable energy sources, and it has been applied in large-scale centralized photovoltaic power plants and distributed photovoltaic power generation systems; the output point of photovoltaic panels is direct current, and it is necessary to convert direct current into alternating current before photovoltaic power generation is connected to the large power grid. The voltage source inverter that converts DC to AC is a key component in a photovoltaic power generation system; due to its advantages in redundancy and capacity control flexibility, compared with single-phase parallel inverters using a common DC bus and an AC bus The use of a single centralized inverter has more application prospects; for ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): H02M7/493H02M7/5387
CPCH02M7/493H02M7/5387
Inventor 王顺亮刘小林刘天琪
Owner SICHUAN UNIV
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