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Applicability of Park transformation for the analysis of transient performance during subsynchronous resonances

机译:Park变换在次同步谐振过程中瞬态性能分析中的适用性

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Long transmission lines have to be compensated to enhance the transport of active power. But a wrong design of the compensation may lead to subsynchronous resonances (SSR). For studies often park equivalent circuits are used. The parameters of the models are often determined analytically or by a three-phase short-circuit test. Models with this parameters give good results for frequencies of 50 Hz and 100 Hz resp. 60 Hz and 120 Hz. But SSR occurs at lower frequencies what arises the question of the reliability of the used models. Therefore in this publication a novel method for the determination of Park equivalent circuit parameters is presented. Herein the parameters are determined form time functions of the currents and the electromagnetic moment of the machine calculated by transient finite-element simulations. This parameters are used for network simulations and compared with the finite-element calculations. Compared to the parameters derived by a three-phase short-circuit a significant better accuracy of simulation results can be achieved by the presented method.
机译:必须补偿较长的传输线以增强有功功率的传输。但是错误的补偿设计可能会导致亚同步谐振(SSR)。为了进行研究,经常使用停车等效电路。模型的参数通常通过分析或通过三相短路测试确定。带有此参数的模型在50 Hz和100 Hz的频率下均具有良好的效果。 60 Hz和120 Hz。但是SSR发生在较低的频率上,这引起了所用模型的可靠性问题。因此,在该出版物中,提出了一种确定Park等效电路参数的新颖方法。在此,这些参数由电流的时间函数和通过瞬态有限元模拟计算出的机器的电磁矩确定。此参数用于网络仿真,并与有限元计算进行比较。与通过三相短路导出的参数相比,通过所提出的方法可以实现更高的仿真结果精度。

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