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电力系统稳定器设计的广义相位补偿法 被引量:1
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作者 王冠楠 孙黎滢 +2 位作者 甘德强 王彬彬 辛焕海 《浙江大学学报(工学版)》 EI CAS CSCD 北大核心 2014年第7期1295-1303,共9页
针对经典相位补偿法理论背景不完善、无法应用于多机系统的问题,从代数学的角度提出简单的特征值实部表达式,应用该式从新的角度分析单机无穷大系统中出现负阻尼现象的原因,解释了电力系统稳定器抑制振荡的机理.将该式推广至多机系统,... 针对经典相位补偿法理论背景不完善、无法应用于多机系统的问题,从代数学的角度提出简单的特征值实部表达式,应用该式从新的角度分析单机无穷大系统中出现负阻尼现象的原因,解释了电力系统稳定器抑制振荡的机理.将该式推广至多机系统,导出适用于多机系统的稳定判据,该判据可以用于稳定器相位补偿参数设计和PSS选址.稳定器增益整定问题被转化为一个只包含少数变量和约束条件的多项式优化问题,介绍2种不同的方法进行求解.通过4个典型系统的算例分析,验证了该方法的可行性和正确性. 展开更多
关键词 低频振荡 特征根实部表达式 广义相位补偿法 电力系统稳定器设计
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Coordinated and uncoordinated design of LFO damping controllers with IPFC and PSS using ICA and SFLA 被引量:1
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作者 Mahdi Toupchi Khosroshahi Farhad Mohajel Kazemi +1 位作者 Mohammad Reza Jannati Oskuee Sajad Najafi-Ravadanegh 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第9期3418-3426,共9页
A single machine-infinite-bus(SMIB) system including the interline power flow controllers(IPFCs) and the power system stabilizer(PSS) controller is addressed. The linearized system model is considered for investigatin... A single machine-infinite-bus(SMIB) system including the interline power flow controllers(IPFCs) and the power system stabilizer(PSS) controller is addressed. The linearized system model is considered for investigating the interactions among IPFC and PSS controllers. To improve the stability of whole system again different disturbances, a lead-lag controller is considered to produce supplementary signal. The proposed supplementary controller is implemented to improve the damping of the power system low frequency oscillations(LFOs). Imperialist optimization algorithm(ICA) and shuffled frog leaping algorithm(SFLA) are implemented to search for optimal supplementary controllers and PSS parameters. Moreover, singular value decomposition(SVD) method is utilized to select the most effective damping control signal of IPFC lead-lag controllers. To evaluate the system performance, different operating conditions are considered. Reponses of system in five modes including uncoordinated and coordinated modes of IPFC and PSS using ICA and SFLA are studied and compared. Considering the results, response of system without controller shows the highest overshoot and the longest settling time for rotor angel at the different operating conditions. In this mode of system, rotor speed has the highest overshoot. Rotor angel in the system with only PSS includes lower overshoot and oscillation than system without controller. When PSS is only implemented, rotor speed deviation has the longest settling time. Rotor speed deviation in the uncoordinated mode of IPFC and PSS shows lower overshoot than system with only PSS and without controller. It is noticeable that in this mode, rotor angel has higher overshoot than system with only PSS. The superiority of the suggested ICA-based coordinated controllers is obvious compared with SFLA-based coordinated controllers and other system modes. Responses of coordinated PSS and IPFC SFLA-based supplementary controllers include higher peak amplitude and longer settling time compared with coordinated IPFC and PSS ICA-based controllers. This comparison shows that overshoots, undershoots and the settling times are reduced considerably in coordinated mode of IPFC based controller and PSS using ICA. Analysis of the system performance shows that the proposed method has excellent response to different faults in power system. 展开更多
关键词 interline power flow controller(IPFC) controller imperialist competitive optimization algorithm power system stabilizer(PSS)
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