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Investigation of Small-Signal Dynamics of Modular Multilevel Converter Under Unbalanced Grid Conditions

机译:电网不平衡条件下模块化多电平变换器小信号动力学研究

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This paper develops a comprehensive dynamic-phasor-based small-signal model for the modular multilevel converter (MMC) system under unbalanced grid conditions, which takes into consideration the dynamics of the MMC system under a balanced grid condition as well as the other emerging internal harmonics produced by the unbalanced grid components and more complex controllers. The small-signal model is validated by comparing the time-domain responses from a detailed electromagnetic transient (EMT) simulation in PSCAD/EMTDC. Based on the eigen-analysis and PSCAD-based time-domain simulation studies, this paper reveals the poorly damped modes that cause unstable oscillations in MMC system under the unbalanced grid conditions. From the results, more poorly damped modes involved in the internal harmonics are emerging under unbalanced grid conditions compared with the modes under the balanced grid conditions, and can highly impact the system dynamic behaviors by the selection of the control parameters. It is also shown that, under the unbalanced grid conditions, the feasible region of the control parameters of the vector current control gets narrowed indicating the reduction of the stability margin, smaller (larger) value of proportional (integral) gain of the circulating current suppressing controller can enhance the system stability, and larger values of the proportional and integral gains of the negative-sequence current suppressing control can result in the harmonic instability of the MMC system. Besides, the parameters of multiple complex-coefficient filters for positive- and negative-sequence components extraction also have a big impact on the small-signal stability of the MMC system and are required to be properly selected.
机译:本文为不平衡电网条件下的模块化多电平转换器(MMC)系统开发了一个基于动态相量的小信号模型,该模型考虑了平衡电网条件下MMC系统的动力学以及其他新兴内部由不平衡的电网组件和更复杂的控制器产生的谐波。通过比较PSCAD / EMTDC中详细的电磁瞬态(EMT)仿真的时域响应来验证小信号模型。基于特征分析和基于PSCAD的时域仿真研究,本文揭示了在不平衡电网条件下,MMC系统中阻尼差的模式会导致不稳定的振荡。从结果来看,与不平衡电网条件下的模式相比,在不平衡电网条件下出现了内部谐波中阻尼更弱的模式,并且通过选择控制参数可以极大地影响系统的动态性能。还表明,在电网不平衡的情况下,矢量电流控制的控制参数的可行区域变窄,表明稳定裕度减小,循环电流抑制的比例(积分)​​增益值较小(较大)。控制器可以增强系统稳定性,而负序电流抑制控制的比例增益和积分增益的较大值可能会导致MMC系统的谐波不稳定。此外,用于正负分量提取的多个复系数滤波器的参数对MMC系统的小信号稳定性也有很大的影响,因此需要适当选择。

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