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Load frequency control of interconnected restructured power system along with DFIG and coordinated operation of TCPS-SMES

机译:互联重组电力系统的负载频率控制以及DFIG和TCPS-SMES的协调运行

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The increased penetration of wind power by doubly fed induction generator (DFIG) in power system results in higher frequency excursion and increased rate of change of frequency in the event of generation loss or increased load demand. This paper presents the added feature of frequency regulation capability of the DFIG by incorporating an extra frequency control support function, tested on an interconnected two-area restructured power system. Frequency control support function responding proportionally to the frequency deviation is proposed to take out the kinetic energy of the wind turbine for improving the frequency response of the system. The presence of Thyristor controlled phase shifter (TCPS) in series with the tie-line near one area and Superconducting Magnetic Energy Storage (SMES) at the terminal of the other area in conjunction with dynamic active power support from the DFIG results in optimal transient performance for PoolCo transactions. Integral gains of AGC loop and parameters of TCPS and SMES are optimized through craziness based particle swarm optimization (CRPSO) in order to have optimal transient responses of area frequencies and tieline power deviation.
机译:在发电系统发生损耗或负载需求增加的情况下,双馈感应发电机(DFIG)在电力系统中增加的风电渗透会导致更高的频率偏移和更高的频率变化率。本文通过结合一个额外的频率控制支持功能(在互连的两区域重组电源系统上进行了测试),介绍了DFIG的频率调节功能的附加功能。提出了与频率偏差成比例响应的频率控制支持功能,以提取风力发电机的动能,以改善系统的频率响应。晶闸管控制移相器(TCPS)与一个区域附近的联络线串联,而另一区域的终端处具有超导磁能存储(SMES),并结合DFIG提供的动态有功功率支持,可实现最佳的瞬态性能适用于PoolCo交易。通过基于疯狂的粒子群优化(CRPSO),可以优化AGC回路的积分增益以及TCPS和SMES的参数,从而获得最佳的区域频率瞬态响应和联络线功率偏差。

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