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An Accelerated Model of Modular Isolated DC/DC Converter Used in Offshore DC Wind Farm

机译:海上直流风电场中模块化隔离式DC / DC转换器的加速模型

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Modular isolated dc/dc converter (MIDC) is the most important equipment in the offshore dc wind farm. However, the simulation of the accurate MIDC model consumes too much time, which makes it difficult to carry out further studies about this topology. In this paper, an acceleratedmodel that can dramatically decrease the consuming time of the MIDC simulation is proposed. Through an in-depth analysis about the MIDC submodule (SM), the LLC series-parallel resonant converter, four equivalent mathematicalmodels that can completely describe the operation modes of the SMare deduced. Thereafter, based on the fourth-order RungeKutta method, a detailed design procedure of the MIDC accelerated simulationmodel is given. Moreover, the influences of different discretization methods on the simulation accuracy and computational speed of the accelerated model are also studied. Finally, the initial simulation model, the nested parent-child simulation method-based simulation model, and the accelerated simulation model of the MIDC with different numbers of SMs are built in the PSCAD/EMTDC. The simulation results prove the effectiveness of the proposed accelerated model.
机译:模块化隔离式DC / DC转换器(MIDC)是海上DC风电场中最重要的设备。但是,准确的MIDC模型的仿真会花费太多时间,这使得难以对该拓扑进行进一步的研究。在本文中,提出了一种可以大大减少MIDC仿真消耗时间的加速模型。通过对MIDC子模块(LLC串并联谐振转换器)的深入分析,推导出了四个可以完全描述SM的工作模式的等效数学模型。此后,基于四阶RungeKutta方法,给出了MIDC加速仿真模型的详细设计过程。此外,还研究了不同离散化方法对加速模型的仿真精度和计算速度的影响。最后,在PSCAD / EMTDC中建立了初始仿真模型,基于嵌套父子仿真方法的仿真模型以及具有不同数量SM的MIDC的加速仿真模型。仿真结果证明了所提模型的有效性。

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