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Calculating the Coupling Reactance Voltage of HVDC Power Transmission System Based On New-Type Converter Transformer

机译:基于新型换流变压器的高压直流输电系统耦合电抗计算

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摘要

In a traditional 12-pulse HVDC power transmission system, because of the coupling reactance voltage in AC bus, the commutation of one bridge will lead to a certain distortion of AC voltage in the other bridge, while the existence of voltage distortion can make the two bridges fail in commutation simultaneously or successively. The HVDC power transmission system based on new-type converter transformer has a new electrical tie-line structure and its change of current transformation relation can influence the coupling reactance voltage in AC bus. This paper analyzes this relation in theory and builds a mathematical model to calculate the new coupling reactance voltage. Simulation results show that the theory is right and the model is ideal. It is expected that this study can be of help in solving similar problems existing in commutation failures.
机译:在传统的12脉冲HVDC输电系统中,由于交流母线上的耦合电抗电压,一个桥的换相会导致另一桥的交流电压发生一定的畸变,而电压畸变的存在会使两个桥的交流畸变。桥同时或相继换向失败。基于新型换流变压器的高压直流输电系统具有新型的电气联络线结构,其电流变换关系的变化会影响交流母线中的耦合电抗电压。本文从理论上分析了这种关系,并建立了一个数学模型来计算新的耦合电抗电压。仿真结果表明理论是正确的,模型是理想的。预期该研究将有助于解决换向失败中存在的类似问题。

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