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Power System Security Optimization of The Nigerian 330kv Transmission Network

机译:电力系统安全优化尼日利亚330KV传输网络

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The necessity of power system security optimization of the Nigerian 330kV transmission is ever increasing. To this end, the optimal placement and control of FACTS devices are proposed for power system security optimization. The optimal placement of the UPFC in the power system is to ensure stability and voltage level improvement. The objective function for the formulation of the optimization problem is to find the opti?mal placement of the UPFC that ensures voltage stability, minimization of Voltage Collapse Point Indicator (VCPI) and active power loss. The MATLAB/SIMULINK model of the case study of Nigerian 330KV, 48-bus power system was created. In the simulations carried out, the system was subjected to transmission line and power plant outage contingencies. Findings showed that the instability due to the power plant outage contingency was more severe than that due to the transmission line outage contingency. Without the placement of the UPFC, in the case of transmission line outage contingency, the voltage level of the critical bus (bus with lowest damping ratio) fell from 0.813 p. u to (and oscillated around) 0.3934 p. u. Whereas in the case of power plant outage contingency without UPFC, the critical bus voltage fell from 0.813 p. u to (and oscillated around) 0.2785 p. u. The system was found to be unstable as all the real parts of the system eigenvalues (in the case of the power plant outage contingency) and most of the eigenvalues (in the case of the transmission line outage contingency) lies on the right-hand side of the S plane. However, with placement and control of the UPFC the voltage transient oscillations (in the cases of the transmission line and power plant outages) were effectively damped out and the voltage level of the critical bus was restored to within the 5% voltage drop requirement. Hence the optimal compensation by the placement of the UPFC enabled the power system to recover from the contingencies and continued to provide quality power supply thus ensuring power system security.
机译:尼日利亚330KV传输的电力系统安全优化的必要性永远越来越多。为此,提出了用于电力系统安全优化的事实设备的最佳放置和控制。 UPFC在电力系统中的最佳位置是确保稳定性和电压电平改善。制定优化问题的目标函数是找到UPFC的OPTI?MAR放置,可确保电压稳定性,最小化电压折叠点指示器(VCPI)和有源功率损耗。创建了尼日利亚330kV,48母电机系统的案例研究的Matlab / Simulink模型。在执行的模拟中,系统经过传输线和电厂停电偶然。调查结果表明,由于电力厂房停用应急的不稳定性比传输线路停用应急更严重。在没有UPFC的情况下,在传输线路停电的情况下,关键总线(阻尼比率最低的总线)的电压电平从0.813 p下降。 U到(和振荡)0.3934 p。你。而在没有高效的电厂停电情况下,临界总线电压从0.813 p下降。你(和围绕周围的振荡)0.2785 p。你。该系统被发现是不稳定的,因为系统特征值的所有真实部位(在发电厂停电的情况下的情况下)和大多数特征值(在传输线停用应急的情况下)位于右侧S飞机。然而,利用UPFC的放置和控制,电压瞬态振荡(在传输线和电厂停电的情况下)被有效地阻尼,并且临界总线的电压电平恢复到5%电压下降要求内。因此,通过放置UPFC的最佳补偿使电力系统能够从突发发生中恢复,并继续提供质量电源,从而确保电力系统安全性。

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