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Study on Voltage Stability Weak Buses of Power System with Multiple Power Sources Integrated

机译:多电源集成电源电力系统电压稳定性弱总线研究

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To obtain the distribution of voltage stability weak buses (VSWB) for power system with multiple power sources integrated, so as to provide a basis for voltage stability control, an analysis method under full time frame is proposed in this paper. Based on the modeling of multiple power sources, combined with the load prediction, the active power output prediction of wind and photovoltaic power and the generation scheduling of conventional power, considering different patterns of load increase and power output increase and allocation of multiple power sources, within a certain period of time and for the specifically selected time sections, the continuation power flow method is respectively used to get the voltage stability critical point (SNB point), where modal analysis is applied, so that the VSWB are obtained of the certain time section. The same calculation is carried out for all the time sections selected, and then the distribution and occurrence frequency of VSWB are summed up, thereby acquiring the concrete condition of VSWB within such certain time period. It's considered that the condition of VSWB can be affected by the different integration buses and penetration rates of multiple power sources. The proposed method is verified on the IEEE 118-bus system, as well as the fact with practical significance that the condition of VSWB varies with the difference of integration buses and the penetration rates of multiple power sources.
机译:为了获得具有多个电源集成的电力系统的电压稳定性弱总线(VSWB)的分布,以便为电压稳定性控制提供基础,本文提出了全时框架下的分析方法。基于多电源的建模,与负载预测相结合,风和光伏电源的有源功率输出预测和传​​统功率的发电调度,考虑到不同的负载增加模式和功率输出增加和多个电源的分配,在一段时间内并且对于专门选定的时间部分,延续功率流量分别用于获得电压稳定性临界点(SNB点),其中施加模态分析,从而获得了一定时间的VSWB部分。对所选择的所有时间部分执行相同的计算,然后求出VSWB的分布和发生频率,从而在诸多时间段内获取VSWB的具体条件。它认为,VSWB的情况可以通过不同的集成总线和多个动力源渗透率的影响。所提出的方法在IEEE 118总线系统上验证,以及具有实际意义的事实,即VSWB的条件随积分总线的差异和多个电源的穿透速率而变化。

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