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采用模块化方法的交直流电力系统混合仿真

Hybrid Simulation for HVDC and Flexible AC Power Systems Based on Modular Approach

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【作者】 孔祥玉李维房大中杨金刚杨晓东

【Author】 KONG Xiang-yu, LI Wei, FANG Da-zhong, YANG Jin-gang, YANG Xiao-dong (Key Laboratory of Power System Simulation and Control (Tianjin University), Ministry of Education, Nankai District, Tianjin 300072, China)

【机构】 电力系统仿真控制教育部重点实验室(天津大学)

【摘要】 高压直流输电系统和柔性交流输电系统中大量大功率电力电子设备的应用,使反映不同物理特征的动态过程相互交织在一起。而在仿真过程中要求既能模拟大规模互联系统的机电暂态过程,又能模拟局部响应快速的电磁暂态过程。提出了一种基于模块化的交直流电力系统混合仿真算法。该算法采用分层分区网络分割,对系统中各种动态元件,包括HVDC和柔性交流输电等电力电子设备及其控制器进行模块化处理,应用双向迭代技术,将电磁暂态仿真程序嵌入到机电仿真程序中,以实现快速、准确模拟交直流混合系统暂态过程。在Kundur2区域系统和IEEE10机39节点系统上对该算法进行了仿真测试,并将其结果与EMTDC结果进行了比较,验证了其准确性和有效性。

【Abstract】 With the extensive applications of high-power electronic devices in HVDC and flexible AC power transmission systems (FACTS), dynamic processes reflecting different dynamic physical characteristics are mutually intertwined during the courses of power systems, which require a simulation program that can not only reflect the electromechanical transient procedures in large-scale interconnected systems, but also the rapid response of electromagnetic transient procedure in local areas. A modular-based HVDC power system hybrid simulation algorithm based on the hierarchical division of district-based network is presented in this paper. With the use of modular processing for the various components of the system, including HVDC and FACTS devices and their controllers, and bi-directional iteration technology, the electromagnetic transient simulation program is embedded into the electromechanical simulation process, to achieve fast and accurate hybrid simulation of transient process occurred in HVDC and HVAC power system. Simulative tests for the proposed algorithm are performed on Kundur’s two-area system and IEEE New England test system, and the obtained simulation results are compared with those by EMTDC software, comparison results show that the proposed method is accurate and efficient.

【基金】 国家自然科学基金资助项目(50777046)~~
  • 【文献出处】 电网技术 ,Power System Technology , 编辑部邮箱 ,2010年07期
  • 【分类号】TM743
  • 【被引频次】6
  • 【下载频次】294
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