Load margin and stability analysis of power-gas interconnection system considering N-1 and power flow transfer prediction

Yan Zhang
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Abstract

In view of the influence of N-1 disconnection on the maximum load margin and system stability of power-gas interconnection system, a continuous power flow model of power system and natural gas system considering the dynamic piping characteristics of natural gas was established. Based on the increase of system load, the system N and N-1 load margin of power system and natural gas system is calculated by SRSM continuous hybrid power flow. The power flow transfer factor after N-1 branch of the electric-gas interconnection system is defined, and the power flow transfer is predicted for the system so as to obtain the off-limit branch of the system. The weak nodes and EH coupling degree of the power system, natural gas system and electric-gas coupling link under the electric-gas coupling are further evaluated.
考虑N-1和潮流转移预测的电-气互联系统负荷裕度及稳定性分析
针对N-1断网对电-气互联系统最大负荷裕度和系统稳定性的影响,建立了考虑天然气管道动态特性的电力系统-天然气系统连续潮流模型。基于系统负荷的增加,采用SRSM连续混合潮流计算电力系统和天然气系统的N和N-1负荷裕度。定义了电-气互联系统N-1支路后的潮流传递系数,并对系统进行潮流传递预测,从而得到系统的越限支路。进一步评价了电-气耦合下电力系统、天然气系统和电-气耦合环节的弱节点和EH耦合程度。
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