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SMES and CES controllers design for load frequency stabilization in two-area interconnected system

机译:SMES和CES控制器设计可在两区域互连系统中实现负载频率稳定

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Load frequency control is one of the most important issues in power systems. When the load is changed abruptly, the frequency of the system disrupts. To damp these deviations, the system controllers should be well tuned. In this paper, two types (thermal-thermal and thermal-hydro) of two-area multi-unit interconnected system are considered. To damp the system oscillations, Automatic Generation Control (AGC), Superconducting Magnetic Energy Storage (SMES) and Capacitive Energy Storage (CES) have been used. PSO algorithm has been applied to design the AGC and the controllers of SMES and CES. The system has been simulated for three cases; system with incorporation of just AGC in two areas, system with inclusion of AGC and CES and finally system with contribution of AGC and SMES in two areas. Simulation results show that contribution of AGC and SMES is superior to other configurations.
机译:负载频率控制是电力系统中最重要的问题之一。当负载突然变化时,系统的频率就会中断。为了消除这些偏差,应对系统控制器进行适当调整。在本文中,考虑了两种类型的(热-热和热-水)两区域多单元互连系统。为了抑制系统振荡,已使用自动发电控制(AGC),超导磁储能(SMES)和电容储能(CES)。 PSO算法已被用于设计AGC以及SMES和CES的控制器。该系统已针对三种情况进行了仿真;仅在两个区域合并了AGC的系统,在两个区域合并了AGC和CES的系统,最后是在两个区域合并了AGC和SMES的系统。仿真结果表明,AGC和SMES的贡献优于其他配置。

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