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Power-Voltage Characteristics of Power System with the Short Transmission Line | Science Publications

机译:输电线路短的电力系统的电压特性科学出版物

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> Problem statement: Power-Voltage curve provides very important information for voltage stability analysis. The exact short transmission line model consists of the resistance and reactance. The resistance causes in the active line loss. It is not easy task to achieve the power-voltage curve characteristics of power system with the exact short line model. Approach: This study applied the concept of the Newton-Raphson method to iteratively solve the nonlinear power flow equations. The power-voltage (P-V) curve characteristic of the system without line loss and with line loss were plotted and compared on various cases. Results: It was found from the study that the resistance of the line obviously provides negative effects on the voltage stability. The line loss causes in the decrement of the critical point. It was found that the leading power factor could increase the critical point of P-V curve. Conclusion: The exact short line model can be considered for voltage stability analysis of the system with the short transmission line.
机译: > 问题陈述:功率-电压曲线为电压稳定性分析提供了非常重要的信息。精确的短传输线模型包括电阻和电抗。电阻会导致有源线损。用精确的短线模型来实现电力系统的功率-电压曲线特性并非易事。 方法:本研究将Newton-Raphson方法的概念应用于迭代求解非线性潮流方程。绘制了没有线路损耗和有线路损耗的系统的电源-电压(P-V)曲线特征,并在各种情况下进行了比较。 结果:从研究中发现,线路的电阻显然会对电压稳定性产生负面影响。线损导致临界点的减少。发现超前功率因数可以增加P-V曲线的临界点。 结论:对于具有短传输线的系统的电压稳定性分析,可以考虑使用精确的短线模型。

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