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Transient Stability of the Power System with the Exact Long Transmission Line Model

机译:精确长输电线路模型的电力系统暂态稳定性

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Problem statement: The exact long transmission line model consists of the lump of the series resistance, reactance and shunt capacitance. With the consideration the actual long transmission line model, it causes in the difficulty of deriving the mathematical model. Approach: This study investigates the transient stability of power system with consideration the exact long transmission line model. The concept of two-port network is applied in this study. The generator, transformer and short transmission line are represented by two-port networks. With the combination principles of the series and shunt connection, the mathematical model is achieved in the much simpler way. The proposed method is tested on the sample system and compared on various cases. Results: The first swing of rotor angle curve of the faulted system without the resistance is obviously higher than that of with the resistance whereas the second swing of the faulted system without the resistance is slightly less than that of with the resistance. The critical clearing time of the system with the resistance is better than that of with resistance. Conclusion: It was found from the simulation results that the resistance of the line provides the improvement of the first swing but not for the second swing. It was found from this study that for practical long line, the resistance is very import parameters to determine the critical clearing time of the single machine infinite system whereas shunt capacitance insignificantly affects on the critical clearing time of the single machine infinite bus system.
机译:问题陈述:精确的长传输线模型包括串联电阻,电抗和并联电容的总和。考虑到实际的长传输线模型,这导致推导数学模型的困难。方法:本研究在考虑精确的长输电线路模型的情况下研究了电力系统的暂态稳定性。本研究中采用了两端口网络的概念。发电机,变压器和短传输线由两端口网络表示。利用串联和并联的组合原理,可以以更简单的方式获得数学模型。所提出的方法在样本系统上进行了测试,并在各种情况下进行了比较。结果:没有阻力的故障系统的转子角曲线的第一摆幅明显高于有阻力的故障系统的转子角曲线,而没有阻力的故障系统的转子第二曲线的摆幅略小于有阻力的系统。带电阻的系统的临界清除时间比带电阻的系统的临界清除时间要好。结论:从仿真结果发现,线路的电阻可以改善第一个摆幅,但不能改善第二个摆幅。从这项研究中发现,对于实际的长线而言,电阻是决定单机无限系统的临界清除时间的重要参数,而并联电容对单机无限母线系统的临界清除时间影响不大。

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