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基于电压定向矢量控制的光伏逆变器接入弱电网下的强迫振荡分析

Forced Oscillation Analysis of Voltage-Oriented Vector Control-Based PV Inverter Connected to Weak Power Grids

语言:

中文摘要

基于同步旋转坐标系的矢量控制(SRF-VC)广泛应用于单级光伏(PV)逆变器并网。然而,最大功率点跟踪(MPPT)引起的有功功率参考值(Pref)间谐波会引发挥发性振荡源,结合SRF-VC中的超调效应与有功-无功功率耦合(RRPC),可能导致振荡放大与强迫振荡问题。本文建立频域解析模型,分析MPPT引发Pref振荡时超调与RRPC对强迫振荡的影响。通过相量图揭示弱电网下锁相环动态缓慢导致的功率耦合机理,推导计及RRPC通道的频域模型,解析次/超同步频率下振荡放大特性,并利用Bode图研究不同控制参数对强迫振荡幅值的影响。最后通过仿真与硬件在环实验验证了理论分析的正确性。

English Abstract

Synchronous reference frame-based vector control (SRF-VC) is widely adopted by single stage photovoltaic (PV) inverter to transfer powers into power grids. However, the overshoot effect and power coupling in SRF-VC, i.e., real and reactive powers coupling (RRPC), may cause oscillation amplification and forced oscillation issues when interharmonics of real power reference (Pref) occur, which is induced by Maximum Power Point Tracking (MPPT) control. In this paper, a frequency domain analytical model is proposed to analyze the effect of overshoot and RRPC on forced oscillation when there is an oscillation source of Pref induced by MPPT. Firstly, interharmonics of Pref induced by MPPT is introduced, which can be the oscillation source of forced oscillation. Then, the power coupling mechanisms of SRF-VC are analyzed by visual phasor diagram, which is induced by slow dynamics of PLL in weak grids. Next, the frequency domain model considering RRPC channels are derived to analytically analyze its oscillation amplification characteristics when Pref at sub/super-synchronous resonance frequency occur. Furthermore, forced oscillation magnitudes influenced by different control parameters are investigated by bode diagram of the proposed frequency domain model. Finally, the influences of overshoot and RRPC on forced oscillation are validated by the simulations and control-hardware-in-loop tests.
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SunView 深度解读

该研究对阳光电源SG系列光伏逆变器在弱电网并网场景具有重要指导意义。文章揭示的MPPT引发Pref间谐波振荡与SRF-VC控制中超调效应、有功-无功功率耦合(RRPC)导致的强迫振荡机理,可直接应用于优化SG系列逆变器的矢量控制策略。建议:1)在MPPT算法中增加功率参考滤波环节,抑制间谐波注入;2)针对弱电网场景优化PLL带宽与电流环参数,降低RRPC耦合强度;3)在iSolarCloud平台集成振荡监测与预警功能。该技术同样适用于ST储能变流器弱电网并网控制优化,提升系统在高阻抗电网下的稳定性与电能质量。