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Allocation and analysis of TCSC in electric power system using optimal reactive power flow

机译:最优无功潮流在电力系统中TCSC的分配与分析

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The electric power system performance when allocated TCSC (Thysristor Controlled Series Compensator) and determined their optimal control parameters was analyzed in this work. The TCSC is used to maximize the total transmission capability of the system and improve the voltage profile, operating within their pre-stablished limits. Computational simulations were performed to analyze the allocation of different amounts of TCSCs in the system in order to maximize the total transmission capacity and to determine the minimum amount of devices considering a predicted loading in the network. Then, the specific number of TCSC defined before were reallocated considering the objective of minimizing the voltage deviation. The allocation problems were solved through branch and bound algorithm by using optimal reactive power flow. Subsequently, the TCSC were maintained by considering the objective of optimizing the voltage profile and loads variations were simulated on the system. The results for the IEEE-118 test systems demonstrated the benefits of using the TCSC in the network because it allowed the increase of the total load of the system and provided an improvement in the voltage profile through its optimum adjustment.
机译:在这项工作中,分析了在分配TCSC(晶闸管控制的串联补偿器)并确定其最佳控制参数时的电力系统性能。 TCSC用于最大化系统的总传输能力并改善电压曲线,并在其预先设定的极限内运行。进行了计算仿真,以分析系统中不同数量的TCSC的分配,以使总传输容量最大化并考虑网络中的预期负载来确定最小数量的设备。然后,考虑到最小化电压偏差的目的,重新分配了之前定义的TCSC的特定数量。利用最优无功潮流,通过分支定界算法解决了分配问题。随后,通过考虑优化电压曲线的目标来维护TCSC,并在系统上模拟负载变化。 IEEE-118测试系统的结果证明了在网络中使用TCSC的好处,因为它可以增加系统的总负载,并通过对其进行最佳调整来改善电压曲线。

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