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模式约束的两阶段电流注入优化方法用于IBR高渗透配电网电压不平衡抑制
Mode-Constrained Two-Stage Current Injection Optimization for Voltage Unbalance Mitigation in IBR-Rich Distribution Network
| 作者 | Tiantian Ji · Pengfeng Lin · Miao Zhu · Wentao Jiang · Xinan Zhang · Changyun Wen · Peng Wang |
| 期刊 | IEEE Journal of Emerging and Selected Topics in Power Electronics |
| 出版日期 | 2025年12月 |
| 卷/期 | 第 14 卷 第 2 期 |
| 技术分类 | 系统并网技术 |
| 技术标签 | 并网逆变器 跟网型GFL 低电压穿越LVRT 弱电网并网 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 |
语言:
中文摘要
针对IBR高渗透配电网中电压不平衡问题,本文提出模式约束的两阶段电流注入优化框架:第一阶段通过闭环建模与特征值分析识别主导振荡模式;第二阶段在频域构建虚拟加速度序列轨迹,在谱能量约束下最大化虚拟能量,实现无振荡最优参考电流切换。该方法兼容现有控制器,适用于动态工况。
English Abstract
Under unbalanced grid conditions, inverter-based resources (IBRs) are required to remain connected to the grid and provide reactive current injection to mitigate voltage unbalance (VU) at the point of common coupling (PCC). Most existing research focuses primarily on steady-state reference current generation under such conditions, whereas current overshoot and oscillations induced by reference-switching have been largely overlooked. Driven by this gap, this article proposes a mode-constrained two-stage current injection optimization framework. In the first stage, the dominant oscillatory modes of a grid-connected IBR are identified through closed-loop transfer function modeling and eigenvalue analysis. In the second stage, a reference-switching trajectory optimization problem is formulated in the frequency domain, in which the trajectory is constructed through a virtual-acceleration sequence. By maximizing the virtual energy contained in the sequence under spectral energy constraints, the fastest and optimal trajectory is indirectly obtained, and the excitation of dominant oscillatory modes during reference switching is thereby prevented. Since this framework is implemented at the reference level, it is fully compatible with existing controllers and adaptable to varying operating conditions. Simulation and experimental results confirm the effectiveness of the proposed optimization framework.
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SunView 深度解读
该研究直接支撑阳光电源组串式逆变器(SG系列)及ST系列储能变流器在弱电网/不平衡电网下的高可靠并网能力。其模式约束优化可嵌入iSolarCloud智能控制策略,提升LVRT/HVRT期间无功响应品质,避免因参考突变引发的电流超调与保护误动。建议在PowerTitan光储一体系统和工商业光伏项目中集成该算法,强化多IBR协同下的PCC电压平衡调控能力,满足新版GB/T 19964及IEEE 1547-2018对不平衡治理的严苛要求。