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强阻尼电压源型虚拟同步发电机大扰动功角稳定性分析 被引量:10

Analysis on Large Disturbance Power-angle Stability of Strong-damping Voltage-source Virtual Synchronous Generators
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摘要 虚拟同步发电机与传统同步发电机具有相似的外特性,在大扰动下,虚拟同步发电机也具有与传统同步发电机相似的失稳机理。但是,与传统同步发电机相比,虚拟同步发电机逆变器会受到电流限幅的影响,功角曲线与传统同步发电机不同;同时虚拟同步发电机阻尼系数比同步发电机大得多,无法简单判断虚拟同步发电机的功角稳定性。因此,以虚拟同步发电机—无穷大系统为例,首先,介绍虚拟功角由饱和曲线向非饱和曲线的转变,分析虚拟同步发电机强阻尼系数的特性。然后,指出受扰后虚拟同步发电机系统动态响应的强时变特性,给出虚拟同步发电机大扰动功角稳定性的判断方法。最后,基于PSCAD仿真验证了所提方法的合理性。 The virtual synchronous generator(VSG)has similar external characteristics to the synchronous generator(SG).The VSG has the same instability mechanism as the SG under the large disturbance.However,compared with the SG,the inverter of VSG is affected by the current limit,whose power-angle curve is different with SG as well.Meanwhile,the damping coefficient of VSG is much larger than that of SG and the power-angle stability of VSG cannot be easily determined.Considering the integration of the VSG and infinity system,the power-angle curve transformed from saturated current to unsaturated current is described and the strong damping of coefficient characteristic of the VSG is analyzed firstly.Then,the strong time-varying characteristic of VSG systems is illustrated.The method which can judge the stability of the VSG system is put forward.Finally,based on the PSCAD software,the simulation is conducted to verify the reasonability of the method mentioned above.
作者 孟志伟 侯玉强 方勇杰 朱玲 杨海洋 MENG Zhiwei;HOU Yuqiang;FANG Yongjie;ZHU Ling;YANG Haiyang(NARI Group Corporation (State Grid Electric Power Research Institute), Nanjing 211106, China;NARI Technology Co. Ltd., Nanjing 211106, China;School of Electrical and Electronic Engineering, North China Electric Power University, Beijing 102206, China;State Key Laboratory of Smart Grid Protection and Control, Nanjing 211106, China)
出处 《电力系统自动化》 EI CSCD 北大核心 2018年第9期44-50,共7页 Automation of Electric Power Systems
基金 国家电网公司科技项目"大型能源基地多直流 交直流送出系统网源协同频率稳定控制技术研究"~~
关键词 虚拟同步发电机 功角稳定 强阻尼 时变性 virtual synchronous generator power-angle stability strong damping time-varying characteristic
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  • 1廖浩辉,唐云.CCEBC/EEAC方法的定性分析[J].中国科学(E辑),2004,34(7):818-831. 被引量:11
  • 2邵振国,薛禹胜,陈关荣.一种并不导致失步的滑步现象[J].电力系统自动化,2003,27(24):6-9. 被引量:7
  • 3王建,李兴源,邱晓燕.含有分布式发电装置的电力系统研究综述[J].电力系统自动化,2005,29(24):90-97. 被引量:277
  • 4江宁强,宋文忠.基于非线性保稳变换的暂态稳定判别方法[J].南京理工大学学报,2007,31(2):205-209. 被引量:2
  • 5LASSETER R H, APIGI P. Microgrid: a conceptual solution [C]// Proceedings of the 35th Annual IEEE Power Electronics Specialists Conference: Vol 6, June 20-25, 2004, Aachen, Germany: 4285-4290.
  • 6VISSCHER K, de HAAN S W H. Virtual synchronous machines (VSG's) for frequency stabilization in future grids with a significant share of decentralized generation [C]// Proceedings of CIRED Seminar: Smart Grids for Distribution, June 23-24, 2008, Frankfurt, Germany.. 1-4.
  • 7LI Y W, VILATHGAMUWA D M, LOH P C. Design, analysis, and real-time testing of a controller for multibus mierogrid system[J]. IEEE Trans on Power Electronics, 2004,19(5), 1195-1204.
  • 8DIAZ G, GONZALEZ-MORAN C, GOMEZ-ALEIXANDRE J, et al. Scheduling of droop coefficients for frequency and voltage regulation in isolated microgrids [J]. IEEE Trans on Power Systems, 2010, 25(1): 489-496.
  • 9LI Y W, KAO C N. An accurate power control strategy for power-electronics-interfaced "distributed generation units operating in a low-voltage multibus microgrid[J]. IEEE Trans on Power Electronics, 2009, 24(12): 2977-2988.
  • 10MORREN J, de HAAN S W H, KLING W L, et al. Wind turbines emulating inertia and supporting primary frequency control[J]. IEEE Trans on Power Systems, 2006, 21 ( 1 ) 433-434.

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