← 返回
储能系统技术 储能系统 虚拟同步机VSG ★ 5.0

一种自适应功率角补偿算法以提升虚拟同步发电机的暂态稳定性

An Adaptive Power Angle Compensation Algorithm for Enhancing Transient Stability of Virtual Synchronous Generator

作者 Zhiyuan Meng · Xiangyang Xing · Xiangjun Li · Wenlong Ding · Rui Zhang · Frede Blaabjerg
期刊 IEEE Journal of Emerging and Selected Topics in Power Electronics
出版日期 2024年8月
技术分类 储能系统技术
技术标签 储能系统 虚拟同步机VSG
相关度评分 ★★★★★ 5.0 / 5.0
关键词 虚拟同步发电机 失步 功角补偿 暂态稳定性 自适应功角补偿算法
语言:

中文摘要

虚拟同步发电机(VSG)通过模拟同步机特性为电网提供频率和电压支撑,提升新能源系统的稳定性。然而,在电网故障期间,VSG同样面临失步等问题。本文通过分析功率-功角曲线中运行点的动态行为,提出一种自适应功率角补偿(APAC)算法,有效解决VSG的两类暂态稳定问题。该控制策略在故障期间从有功功率控制切换至功率同步控制,并实施功角补偿,无需依赖平衡点存在或复杂的参数设计与线路阻抗信息,显著增强系统鲁棒性与暂态稳定性。仿真与实验结果验证了所提方法的有效性。

English Abstract

The virtual synchronous generator (VSG) is proposed to emulate the characteristics of synchronous generators, providing frequency and voltage support to the grid, thereby enhancing the stability of new energy generation systems. However, like synchronous generators, VSGs also face issues such as loss of synchronization (LOS) during grid faults. In this article, the behavior of operating points in various areas using the power-power angle (P– ) curve is analyzed, showing that transient stability issues in VSG can be effectively addressed through power angle compensation. Consequently, an adaptive power angle compensation (APAC) algorithm is proposed to resolve two types of transient stability problems encountered in VSG. The proposed control strategy involves switching from the active power control loop (APCL) to power synchronization control during grid faults and compensating for the power angle. Notably, this approach enables VSG to operate normally, regardless of equilibrium point presence during grid faults, effectively preventing LOS without complex parameter design and grid impedance information. These features give VSG high robustness and enhance the transient stability of VSG-based systems. Finally, the simulation and experimental results provide further evidence of the effectiveness of the proposed method.
S

SunView 深度解读

该自适应功率角补偿算法对阳光电源ST系列储能变流器和PowerTitan大型储能系统具有重要应用价值。当前阳光电源构网型GFM控制中的VSG技术在电网故障时存在失步风险,该算法通过功率-功角曲线动态分析实现有功功率控制与功率同步控制的自适应切换,无需复杂参数整定和线路阻抗信息,可直接集成到ST储能变流器的控制策略中。该技术能显著提升储能系统在弱电网和故障工况下的暂态稳定性,增强PowerTitan系统在大规模新能源并网场景的鲁棒性,为阳光电源构网型储能产品在高比例新能源电网中的应用提供关键技术支撑,符合储能系统从跟网向构网演进的技术路线。