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首页> 外文期刊>The Journal of Engineering >Analysis of influencing factors on sub-synchronous oscillation of wind-thermal-bundled system sent out via AC/DC transmission system
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Analysis of influencing factors on sub-synchronous oscillation of wind-thermal-bundled system sent out via AC/DC transmission system

机译:通过AC / DC传输系统发出风热捆绑系统副同步振荡的影响因素分析

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摘要

Sub-synchronous oscillation may occur when the wind-thermal-bundled system sent out via AC/DC transmission (WTBH) is integrated in power grid. Causing large-scale wind-turbine tripping, even lead the system to collapse. First, in this study the mechanism of sub-synchronous oscillation of this system is analysed. Second, the influencing factors such as the ratio of the wind-thermal-bundled installed capacity, the series compensation parameters of AC transmission line, the different operating conditions of wind power etc., are analysed, which can cause different degree impact on the sub-synchronous oscillation. Finally, the system is simulated under the Power Systems Computer Aided Design (PSCAD) environment. The results show that under the same conditions, the higher series compensation, the greater transmission capacity of the AC line, the greater risk of the sub-synchronous oscillation. Under the condition of full load, the greater proportion of installed capacity of Doubly fed Induction Generator (DFIG) is, the less risk of sub-synchronous oscillation; Under the lower wind speed condition, reducing the number of wind turbine can eliminate the risk of sub-synchronous oscillation, and the oscillation frequency vary with the number of wind turbine.
机译:当通过AC / DC传输(WTBH)的风热捆绑系统集成在电网中时,可能会发生子同步振荡。导致大规模的风力涡轮机跳闸,甚至导致系统崩溃。首先,在这项研究中,分析了该系统的子同步振荡机制。其次,分析了影响因素,如风热捆绑装机的比例,交流传输线的串联补偿参数,风力电量的不同操作条件等,这可能对亚的次数产生不同的程度 - 同步振荡。最后,系统在电力系统计算机辅助设计(PSCAD)环境下模拟。结果表明,在相同的条件下,序列补偿较高,传输容量越大,副同步振荡的风险越大。在满载的条件下,双馈诱导发电机(DFIG)的装机容量比例越大,子同步振荡的风险越小;在较低的风速条件下,减少风力涡轮机的数量可以消除子同步振荡的风险,并且振荡频率随着风力涡轮机的数量而变化。

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