基于thsamvenin等效的改进模块化多电平转换器等效方法

Jin Enshu, Y. Xiaofan, Xia guowu, Zhang Yagu
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引用次数: 1

摘要

传统的等效方法是基于模块化多电平变换器(MMC)的稳态,没有考虑半桥子模块阻塞,但在电磁暂态仿真中,当模块多电平变换器处于启动阶段或故障时,有许多子模块处于阻塞状态。当半桥子模块被阻塞时,桥臂的电流方向会频繁变化。由于二极管插补仿真不当,导致桥臂电流存在畸变点,导致仿真精度低,效果差。不同于传统的桥臂等效方法只考虑系统的正常工作状态,本文提出了一种基于thsamvenin等效的改进模块化多电平变换器等效方法。此外,在半桥子模块处于锁定状态时,利用PSCAD仿真软件中嵌入的二极管进行建模,有效解决了二极管数值插补问题,从而提高了仿真波形的精度,加速效果明显。
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Improved Modular Multilevel Converter Equivalent Method based on Thévenin’s equivalent
the traditional equivalent method is based on the Modular Multilevel Converter (MMC) steady state, without considering the half-bridge sub-module blocking, but in the electromagnetic transient simulation, when the module multilevel Converter is in the start-up phase or fails, there are many sub-modules in the blocked state. When the half-bridge sub-module is blocked, the current direction of the bridge arm will change frequently. Due to the improper simulation of the diode interpolation, the bridge arm current has a distortion point, resulting in low simulation accuracy and poor effect. This paper proposes an improved modular multilevel converter equivalent method based on Thévenin’s equivalent, which is different from the traditional bridge arm equivalent method which only considers the normal working state of the system. Moreover, when the half-bridge sub-module is in the locked condition, the diodes embedded in the PSCAD simulation software are used for modeling, so that the problem of diode numerical interpolation is effectively solved, thereby improving the precision of the simulation waveform and the speed-up effect is obvious.
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