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Reduced-Order Dynamic Model of Modular Multilevel Converter in Long Time Scale and Its Application in Power System Low-Frequency Oscillation Analysis

机译:模块化多电平转换器的依次减少动态模型及其在电力系统低频振荡分析中的应用

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摘要

A reduced-order dynamic phasor model of modular multilevel converter (MMC) in long time scale, which is applied for power system low-frequency oscillation analysis, is investigated. A tenth-order dynamic phasor model is derived in consideration of the internal circulation current dynamic of MMC. The model is verified via electromagnetic transient simulation. Then, an application of the singular perturbation method to MMC model reduction is presented. Separation of eigenvalues is used as a characterization of time scales and small time constant states is eliminated in the full-order model of MMC. MMC high-voltage direct current (HVdc) models with various orders are embedded into the four-machine two-area system to compare the low-frequency oscillation analysis results. The frequency domain analysis and time domain simulations show that the second-order model has satisfactory performance in describing the low-frequency characteristics of MMC. Moreover, the influence of MMC-HVdc transmission power and outer loop controller parameters on low-frequency oscillation is investigated using the second-order model. The effectiveness of reduced-order model in supplementary controller parameter design is also validated by comparing the difference in the response of various-order models to supplementary frequency-based control.
机译:研究了模块化多电平转换器(MMC)的减小阶动动态相位模型,其长时间施加用于电力系统低频振荡分析。考虑到MMC的内部循环电流动态,推动了第十次动态相量模型。通过电磁瞬态仿真验证该模型。然后,提出了奇异扰动方法对MMC模型减少的应用。特征值的分离用作时间尺度的表征,并且在MMC的全阶模型中消除了小的时间恒定状态。具有各种订单的MMC高压直流(HVDC)型号嵌入到四机两区域系统中,以比较低频振荡分析结果。频域分析和时域仿真表明,二阶模型在描述MMC的低频特性方面具有令人满意的性能。此外,使用二阶模型研究了MMC-HVDC传输功率和外环控制器参数对低频振荡的影响。通过比较各种阶模型对基于频率的控制的响应差异,还验证了补充控制器参数设计中减少模型的有效性。

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