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作 者:马幼捷[1] 张继东[1] 周雪松[1] 王新志[1]
机构地区:[1]天津理工大学自动化学院,天津市南开区300191
出 处:《电网技术》2008年第9期74-79,共6页Power System Technology
摘 要:为揭示含风电场电力系统静态电压稳定机理以及由于风电注入引起系统电压稳定性和解的结构变化过程,采用了分岔分析方法对风电场并入3节点简单电力系统进行了分析研究。以风电场注入有功功率为控制参数,进行了单参数电压稳定性分岔分析。在单参数分析的基础上引入无功补偿作为第二个控制参数,进行了双参数制约性分析和双参数分岔边界的确定。研究表明:在缺乏无功补偿的情况下,系统运行在较低的电压水平;当对系统进行有效电容补偿时,系统各节点的电压和鞍结分岔点的电压均得到有效提升,并且无功补偿增加了系统注入功率极限,有效扩展了鞍结分岔的边界;在高功率的风电注入情况下,系统会发生电压崩溃。To reveal the mechanism of steady state voltage instability of power system containing wind farm and the variation process of power system voltage stability and structural change of the solution caused by injecting wind power, the bifurcation analysis m^thod is used to research a simple 3-bus power system with wind farm connected. Taking the injected active power of wind farm as controllable parameter, the bifurcation analysis on single parameter voltage stability is performed. On the basis of single parameter analysis reactive power compensation is selected as the second controllable parameter to conduct dual-parameter conditionality analysis and determine dual-parameter bifurcation boundary. Research result shows that when reactive power compensation is absent, power system operates on lower voltage level; when wind turbine generators are equipped with effective capacitance compensation, the voltage of each node and that of saddle-node bifurcation point are effectively pulled up, and the injecting power limit of wind farm and the boundary of saddle-node bifurcations are extended efficiently; and power system voltage collapse may happen, while high capacity of wind power is injected.
分 类 号:TM712[电气工程—电力系统及自动化]
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