低频输电系统改进型虚拟同步发电机的D-Q小信号阻抗分析

Jing Wu, Yuchao Shi, Haitao Zhang, Zhibin Ye, Chenchen Li, Guofeng Xu
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引用次数: 0

摘要

由于对电力系统原有惯量下降的担忧,虚拟同步发电机(VSG)的引入迅速成为研究热点。为了分析VSG的阻抗特性和并网系统的稳定性,本文首先提出了一种新型的VSG功率外控制回路。结合经典的内电流环,可实现快速电流调节、过流保护和矢量控制。然后,推导了同步参考(d-q)框架下VSG的小信号阻抗模型以及内电流回路和外功率回路。由于VSG的d-q框架的d轴随指令参考而变化,在稳态时并不总是与系统电压矢量重合,因此引入了阻抗变换矩阵(ITM),通过该矩阵可以将所有阻抗重构为统一的d-q框架,以便进行比较和分析。在上述工作的基础上,分析了阻抗特性及相关的影响因素,如惯性、阻尼等。结果表明:1)惯性和阻尼因素对阻抗特性影响不大;2)与基于锁相环的逆变器阻抗相比,基于vsg的逆变器阻抗特性更有利于系统的稳定性;3)在单位功率因数工作点,电阻部分为正,对抑制负电阻引起的次同步振荡具有重要意义。最后,在MATLAB /Simulink上进行了数据仿真,验证了小信号阻抗模型的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
D-Q Small-Signal Impedance Analysis of Improved Virtual Synchronous Generators for Low-frequency Transmission System
With concerns about the decline of the original inertia of power system, virtual synchronous generator (VSG) is introduced and becomes a research hotspot rapidly. To analysis the impedance characteristic of VSG and grid-tied system stability, this paper firstly proposes a novel outer control loop of power for the VSG. Combined with the classical inner-current loop, fast current regulation and over-current protection and vector control can be realized. Afterwards, small-signal impedance models of VSG as well as inner-current and outer-power loops in the synchronous reference (d-q) frame are derived. As the d-axis of the d-q frame of VSG varies with the command reference and doesn't always coincide with the system voltage vector during steady state, an impedance transformation matrix (ITM) is introduced, through which all the impedances can be reconstructed to a unified d-q frame for the sake of comparison and analysis. On the basis of the work above, the impedance characteristics and related influence factors like inertia, damping factor are analyzed. Results show that: 1) Inertia and damping factors have little effects on the impedance characteristic; 2) Compared with PLL-based inverter impedance, the impedance characteristic of VSG-based inverter is much better for system stability; 3) At the unity power factor working point, the resistance part of is positive, being of importance for suppressing sub-synchronous oscillation caused by negative resistance. Finally, simulation of data on MATLAB /Simulink is built to testify the validity of the small-signal impedance models.
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