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Performance Analysis of UPFC and SVC- TCSC Combination in Transmission Network

机译:传输网络中UPFC和SVC-TCSC组合的性能分析

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Voltage stability is the most challenging part of recent deregulated power transmission systems and Flexible AC transmission system (FACTS)devices support to sustain and advance voltage stability. But, choosing the suitable FACTS device and its optimal placement in the network is a matter of concern under practical constraints. In the context of the voltage profile (VP)improvement, active and reactive power losses reduction, cost of device, and Comparative environmental pollution Reduction Index (CEPRI), the combination of SVC and thyristor controlled series compensator (TCSC)and the unified power flow controller (UPFC)are compared to determine the most preferable FACTS device and its optimal placement in the system for optimum outcome. The standard IEEE 30-bus test system with haphazardly increased load is used for this purpose. A new online voltage stability index (NVSI), comparative Environmental Pollution Reduction Index (CEPRI)are the novel inclusion. The multiple objective functions (MOFs)are normalized and converted by proposed weighted combined objective function (COF)to define the apt device and its optimal location for placement of FACTS device. The results show that in presence of system's physical constraints, the combination of SVC and TCSC is the most suitable device.
机译:电压稳定性是最近放松管制的电力传输系统中最具挑战性的部分,而柔性AC传输系统(FACTS)设备支持维持和提高电压稳定性。但是,在实际的约束下,选择合适的FACTS设备及其在网络中的最佳位置是一个值得关注的问题。在改善电压曲线(VP),减少有功和无功功率损耗,降低设备成本以及降低环境污染指数(CEPRI)的背景下,将SVC和晶闸管控制串联补偿器(TCSC)相结合,并实现统一的潮流比较控制器(UPFC)来确定最可取的FACTS设备及其在系统中的最佳放置以获得最佳结果。为此目的,使用具有偶然增加的负载的标准IEEE 30总线测试系统。一个新的在线电压稳定指数(NVSI),比较环境污染减少指数(CEPRI)是新加入的内容。通过建议的加权组合目标函数(COF)对多个目标函数(MOF)进行标准化和转换,以定义apt设备及其放置FACTS设备的最佳位置。结果表明,在存在系统物理约束的情况下,SVC和TCSC的组合是最合适的设备。

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