电压源换流器式高压直流输电的动态建模与暂态仿真  被引量:54

DYNAMIC MODELING AND TRANSIENT SIMULATION FOR VOLTAGE SOURCE CONVERTER BASED HVDC

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作  者:郑超[1] 周孝信[1] 李若梅[2] 

机构地区:[1]中国电力科学研究院,北京市海淀区100085 [2]中国电机工程学会,北京市宣武区100761

出  处:《电网技术》2005年第16期1-5,共5页Power System Technology

基  金:国家重点基础研究发展规划资助项目(2004CB217900)。~~

摘  要:基于节点电流注入法建立了交直流统一基准值下的电压源换流器式高压直流输电(VSC-HVDC)的详细动态模型。该模型包括电压源换流器模型、直流系统内部动态模型以及控制系统三个部分,具有一般性。利用电力系统分析综合程序提供的用户自定义功能(PSASP/UD)对VSC-HVDC交、直流并联输电系统进行的暂态仿真分析验证了VSC-HVDC动态模型的正确性。仿真结果还表明,VSC-HVDC的直流侧电容以及换流变压器漏抗的大小对抑制功角振荡无明显效果;两端VSC采用定交流电压控制方式时系统具有较好的电压稳定性,但在这种控制方式下,在系统受扰期间VSC的过载程度较两端定无功功率控制方式下更为严重。Based on the method of injecting current at nodes, a detailed dynamic model for voltage source converter based HVDC (VSC-HVDC) is built up, which includes three parts, i.e,, the voltage source converter, the internal dynamic model of DC system and control system. By use of the user-defined function provided by Power System Analysis Software Package (PSASP), the correctness of the built dynamic model for VSC-HVDC is verified by transient simulation of parallel VSC-HVDC/AC transmission system. Simulation results also show that: (A) the value of capacitors at DC side of VSC-HVDC and that of the leakage impedance of converter transformer do not take evident effect in damping load angle oscillation; and (B) when constant AC voltage control mode is applied to VSCs at both ends of VSC-HVDC, a better voltage stability is obtained, but when the system is disturbed the overload extent of VSCs at both ends of VSC-HVDC is more severe under this control mode than overload extent of VSCs at both ends of VSC-HVDC under constant reactive power control mode.

关 键 词:电压源换流器 轻型高压直流输电 动态建模 暂念仿真 电力系统 

分 类 号:TM721.1[电气工程—电力系统及自动化]

 

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