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Optimal allocation of Distributed Generation (DGs) and static VAR compensator (SVC) in a power system using Revamp Voltage Stability Indicator

机译:使用改造电压稳定指示器在电力系统中的分布式发电(DGS)和静态VAR补偿器(SVC)的最佳分配

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The power system round the globe functions at highly loaded conditions resulting in poor voltage profile, voltage instability and high system losses. Electrical power increment and difficulties in providing required capacity provide a spur to appoint a Distributed Generation (DGs) and Static VAR Compensator (SVC) option. DGs and SVC integration ameliorate voltage profiles, system efficiency, Voltage stability and power quality and to lower system losses, while neglecting consequential venture in transmission and distribution systems. The device does not work satisfactorily if it is placed in any random location in the system therefore It is necessary to determine the optimal location of the devices (DG and SVC), as the computational time requirement can be reduced by performance analysis of the device at weaker bus location. In the present work on an IEEE 14 bus system, the weak bus identification is determined by pioneering and ingenious approach called Revamp Voltage Stability Indicator (RVSI). The optimal allocation of the device has been done based on its performance assessment at different identified weak bus locations using 3 different indices Voltage Profile Improvement Index (VPII), Line Loss Reduction Index (LLRI) and Revamp Voltage Stability Indicator (RVSI). The Electrical Transient Analyzer Program (ETAP) software is being used for the load flow analysis of the IEEE 14 bus system.
机译:电力系统在高负载条件下绕过全球功能,导致电压曲线,电压不稳定和高系统损耗。提供所需容量的电力增量和困难提供了指定分布式发电(DGS)和静态VAR补偿器(SVC)选项的刺激。 DGS和SVC集成可改善电压型材,系统效率,电压稳定性和功率质量,并降低系统损耗,同时忽略变速箱和分配系统中的改变风险。如果在系统中的任何随机位置放置在系统中的任何随机位置,则设备不得确定设备(DG和SVC)的最佳位置,因为通过设备的性能分析可以减少计算时间要求较弱的巴士地点。在IEEE 14总线系统上的本作工作中,通过称为改造电压稳定指示器(RVSI)的开创和巧妙方法来确定弱总线识别。该装置的最佳分配是基于使用3种不同索引电压型材改进指数(VPII),线丢失减少指数(LLRI)和改造电压稳定指示器(RVSI)的不同识别的弱总线位置的性能评估。电气瞬态分析器程序(ETAP)软件正在用于IEEE 14总线系统的负载流分析。

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