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An investigation on interarea mode oscillations of interconnected power systems with integrated wind farms

机译:集成风电场的互联电力系统区域间模式振荡研究

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摘要

The ever-increasing penetration of wind power integration into a power system can produce significant impacts on the operation of an interconnected power system. As the major energy conversion technology for large wind turbines, the doubly fed induction generator (DFIG) will play an important role in future power systems. Hence, the impacts of the DFIG on the low-frequency oscillations of interconnected power systems have become an important issue with extensive concerns. This paper examines the impacts of several factors, including the DFIG transmission distance, tie-line power of the interconnected system, DFIG capacity, with/without a power system stabilizer (PSS), on the low frequency oscillation characteristic of an interconnected power system using both eigenvalue analysis and dynamic simulations. To investigate the effects of these factors on the interarea oscillation mode, case studies are carried out on two two-area interconnected power systems, and some conclusions are obtained. (C) 2015 Elsevier Ltd. All rights reserved.
机译:风电集成在电力系统中的渗透不断增加,会对互联电力系统的运行产生重大影响。作为大型风力发电机的主要能量转换技术,双馈感应发电机(DFIG)将在未来的电力系统中扮演重要角色。因此,DFIG对互连电力系统的低频振荡的影响已成为一个受到广泛关注的重要问题。本文研究了几个因素对DFIG传输距离,互连系统的联络线功率,DFIG容量(带/不带电源系统稳定器(PSS))的影响,这些影响使用以下方法互连的电源系统的低频振荡特性特征值分析和动态仿真。为了研究这些因素对区域间振荡模式的影响,对两个两区域互联的电力系统进行了案例研究,并得出了一些结论。 (C)2015 Elsevier Ltd.保留所有权利。

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