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首页> 外文期刊>IEEE Transactions on Industrial Electronics >Exact Nonlinear Micromodeling for Fine-Grained Parallel EMT Simulation of MTDC Grid Interaction With Wind Farm
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Exact Nonlinear Micromodeling for Fine-Grained Parallel EMT Simulation of MTDC Grid Interaction With Wind Farm

机译:MTDC栅格互动与风电场微粒平行EMT模拟的精确非线性微模

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Detailed high-order models of the insulated-gate bipolar transistor (IGBT) and the diode are rarely included in power converters for large-scale system-level electromagnetic transient (EMT) simulation on the CPU, due to the nonlinear characteristics albeit they are more accurate. The massively parallel architecture of the graphics processing unit (GPU) enables a lower computational burden by avoiding the computation of complex devices repetitively in a sequential manner and thus is utilized in this paper to simulate the wind farm-integrated multiterminal dc (MTdc) grid based on the modular multilevel converter (MMC). Fine-grained circuit partitioning is proposed so that the nonlinear switching elements are physically separated with the smallest circuit unit. By implementing these subsystems with the same attributes as a GPU program and computing it in a massively parallel manner, it is demonstrated that the GPU is able to achieve a significant speedup over multicore CPUs and its computation time incremental is much smaller when the MMC level scales up. The improved insight and accuracy of the proposed modeling methodology and the designed GPU program are validated at the system- and device-level by off-line commercial simulation tools.
机译:绝缘栅极双极晶体管(IGBT)和二极管的详细高阶模型很少包括在CPU上的大规模系统级电磁瞬态(EMT)模拟中的功率转换器中,由于它们更多的非线性特性准确的。图形处理单元(GPU)的大规模平行架构通过避免以顺序方式重复计算复杂设备的计算来实现较低的计算负担,因此在本文中使用了基于风电场集成的Multimerminal DC(MTDC)网格在模块化多级转换器(MMC)上。提出细粒电路分区,使得非线性开关元件用最小电路单元物理地分离。通过将这些子系统以与GPU程序相同的属性实现并以大规模并行方式计算它,据证明GPU能够通过多核CPU实现显着的加速,并且当MMC级别尺度时,其计算时间增量要小得多。向上。通过离线商业仿真工具,在系统和设备级验证了所提出的建模方法和设计的GPU程序的改进洞察力和准确性。

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