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Small Signal Frequency-Domain Model of a LCC-HVDC Converter Based on an Infinite Series-Converter Approach

机译:基于无限串联变换器方法的LCC-HVDC变换器小信号频域模型

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In this paper, an improved analytical small signal model of the line commutated converter (LCC) is developed in direct-quadrature-zero coordinates based on the assumption of infinite six-pulse converters. The dynamics of the commutation inductance and transportation delays during commutation are included in the model, and the sampling of the measurement of firing and extinction angles is added to accommodate actual converters with a finite pulse number (e.g., 12-pulse). The model is validated by comparing the frequency response with one obtained by frequency scanning in an electromagnetic transients (EMT) simulation. The model is shown to be effective in investigating system stability when the LCC is connected to an arbitrary external network. To do this, the frequency response of the combined system is plotted, and the generalized Nyquist stability criterion is applied. This stability result is validated by a time domain simulation on an EMT program using the first CIGRE HVDC benchmark system and the IEEE 14-bus system. Compared to the traditional LCC model, the proposed model is shown to have significantly better accuracy in system stability determination.
机译:在本文中,基于无穷六脉冲转换器的假设,在直接正交零坐标下开发了一种改进的线性换向转换器(LCC)的解析小信号模型。该模型包括换向电感的动态特性和换向过程中的传输延迟,并且添加了触发角和消光角的测量采样,以适应具有有限脉冲数(例如12脉冲)的实际转换器。通过将频率响应与电磁瞬变(EMT)仿真中通过频率扫描获得的频率响应进行比较来验证该模型。当LCC连接到任意外部网络时,该模型可有效地研究系统稳定性。为此,绘制了组合系统的频率响应,并应用了广义的奈奎斯特稳定性准则。通过使用第一个CIGRE HVDC基准系统和IEEE 14总线系统在EMT程序上进行时域仿真,可以验证此稳定性结果。与传统的LCC模型相比,该模型在确定系统稳定性方面具有明显更高的准确性。

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