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电动汽车驱动 虚拟同步机VSG ★ 5.0

补偿器方法:解决虚拟同步电机的暂态稳定性问题

The Compensator Approach: Solving the Transient Stability Issues of Virtual Synchronous Machines

作者 Alessia Camboni · Vincenzo Mallemaci · Fabio Mandrile · Radu Bojoi
期刊 IEEE Transactions on Industrial Electronics
出版日期 2024年12月
技术分类 电动汽车驱动
技术标签 虚拟同步机VSG
相关度评分 ★★★★★ 5.0 / 5.0
关键词 可再生能源 虚拟同步机 暂态稳定性 虚拟同步补偿器 电网集成
语言:

中文摘要

可再生能源通过电力电子设备持续接入电网,影响了电力系统的稳定性,对换流器控制技术提出了新挑战。虚拟同步电机(VSM)通过模拟同步机行为,为可再生能源并网提供了可行的控制方案。然而,在大电压跌落情况下,虚拟转子加速显著,导致VSM存在暂态失稳问题。现有研究虽提出多种改进控制策略,但往往增加算法复杂性和参数整定难度,且仅能缓解而非根除该问题。本文提出虚拟同步补偿器(VSC)新架构,从实现机制上彻底消除VSM的暂态不稳定性。VSC在严重且持续的电压跌落下仍能保持同步运行,无需附加控制模块。理论分析与实验验证了VSC优异的暂态响应性能。

English Abstract

The continuous integration of renewable energy sources (RES) into the grid through power electronics impacts the power system stability, posing new challenges for control techniques implemented on power converters. The virtual synchronous machine (VSM) represents a viable power converter control solution for the RES integration, providing natural grid support capability resulting from the emulation of the synchronous machine behavior. However, the VSM control faces transient stability issues under large voltage sags due to the significant acceleration of the virtual rotor. The literature reports numerous transient stability analyses, proposing different control solutions to improve the transient response of virtual synchronous generators (VSGs). However, they increase the complexity of the control algorithm, requiring additional tuning. Furthermore, they often mitigate rather than eliminate the transient stability issues. Therefore, this article provides a new perspective on VSM implementation, proposing the virtual synchronous compensator (VSC) concept as a straightforward and definitive solution to eliminate the VSM's transient instability. The VSC maintains its synchronism under large and prolonged voltage sags, overcoming the transient stability issues implied by conventional VSG algorithms without additional control modules. The VSC's transient response is verified theoretically and experimentally, proving the claimed benefits.
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SunView 深度解读

该虚拟同步补偿器(VSC)技术对阳光电源构网型产品具有重要应用价值。针对ST系列储能变流器和PowerTitan大型储能系统,VSC架构可从根本上解决现有VSG控制在电网电压大幅跌落时的暂态失稳问题,无需复杂的附加控制模块和繁琐参数整定,显著提升储能系统的电网支撑能力和故障穿越性能。对于SG系列光伏逆变器的构网型GFM控制模式,该技术可增强弱电网环境下的同步稳定性,特别适用于高比例新能源接入场景。建议阳光电源将VSC架构与现有VSG技术对比验证,评估其在实际工况下的暂态响应优势,为下一代构网型产品提供更可靠的控制方案,巩固在储能和构网型逆变器领域的技术领先地位。