Research on Electromechanical Transient-Electromagnetic Transient Hybrid Simulation Algorithm for Power System

Wang Xu, Su Qiang
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Abstract

With the increasing scale of power grids, traditional electromechanical transient or electromagnetic transient simulation software has begun to reveal its own limitations when analyzing the operating characteristics of the power grid. Realizing the hybrid simulation of electromagnetic transients and electromechanical transients in the power system has expanded the scale of electromagnetic transient simulation. On the other hand, it also provides the necessary system background for the electromagnetic transient network simulation analysis. This paper uses electromagnetic transient-electromechanical transient hybrid simulation technology for engineering analysis and application, which can avoid the system equivalent workload due to the limitation of electromagnetic transient simulation scale, and can greatly improve the accuracy of system analysis and research. For the study of AC and DC systems, DC multi-infeed systems and high-power electronic equipment, the dynamic impact of system operations will effectively play a role, so the electromagnetic transient -electromechanical transient hybrid simulation has become hot spot in the field of power system of simulation.
电力系统机电暂态-电磁暂态混合仿真算法研究
随着电网规模的不断扩大,传统的机电暂态或电磁暂态仿真软件在分析电网运行特性时开始暴露出自身的局限性。实现电力系统中电磁暂态和机电暂态的混合仿真,扩大了电磁暂态仿真的规模。另一方面,也为电磁暂态网络仿真分析提供了必要的系统背景。本文采用电磁瞬变-机电瞬变混合仿真技术进行工程分析与应用,避免了因电磁瞬变仿真规模的限制而造成的系统等效工作量,大大提高了系统分析研究的准确性。对于交直流系统、直流多进给系统和大功率电子设备的研究,动态会有效地影响系统的运行,因此电磁暂态-机电暂态混合仿真已成为电力系统仿真领域的热点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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