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基于滑模控制的孤岛交流微网复功率共享新方法
A Novel Complex Power Sharing Based on Sliding Mode Control for Islanded AC Microgrids
| 作者 | Carlos Alfaro · Ramon Guzman · Antonio Camacho · Ángel Borrell · Luis Garcia de Vicuña |
| 期刊 | IEEE Transactions on Industrial Electronics |
| 出版日期 | 2024年11月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 构网型GFM 下垂控制 微电网 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 孤岛微电网 并网逆变器 复滑模控制 复相量模型 功率共享 |
语言:
中文摘要
本文提出一种用于孤岛微网中构网型逆变器的新型复滑模控制策略,替代依赖下垂控制、通信式二次控制和虚拟阻抗的传统分层控制方法。通过建立基于视在功率微分方程的复相量模型,推导出线性化复数动态模型,简化了控制律设计。该策略具有三大优势:实现阻性和感性线路下的精确有功与无功功率分配,无需虚拟阻抗;对线路阻抗失配及负载变化、逆变器投切等外部扰动具备强鲁棒性;无需二次频率调节。实验结果验证了该方法的有效性。
English Abstract
This article introduces a novel complex sliding-mode control strategy for grid-forming inverters in islanded microgrids. This approach offers an alternative to the traditional hierarchical control strategies that typically rely on droop control, communication-based secondary controls, and virtual impedance methods. To develop the complex sliding-mode control, we propose a complex phasor model for grid-forming inverters, presenting an alternative to the conventional power flow model used in ac microgrids. This model enables the derivation of a linear complex dynamic model for grid-forming inverters connected to a microgrid, based on the apparent power differential equation, thereby simplifying the control law design process. The proposed control system features three key advantages: first, it ensures precise active and reactive power sharing across both resistive and inductive power lines, eliminating the need for virtual impedance; second, it exhibits high robustness against line impedance mismatches and external disturbances, including load changes and the connection and disconnection of inverters; and third, it eliminates the requirement for secondary frequency control. Experimental results validate the effectiveness of the proposed control strategy.
S
SunView 深度解读
该滑模复功率共享控制技术对阳光电源ST系列储能变流器和PowerTitan储能系统的构网型GFM控制具有重要应用价值。核心优势在于:1)无需虚拟阻抗即可实现阻性/感性线路下的精确功率分配,可简化ST储能变流器的控制参数配置,提升多机并联系统的即插即用性;2)对线路阻抗失配和负载扰动的强鲁棒性,可增强PowerTitan系统在工商业微网场景下的稳定性;3)无需二次频率调节,可降低iSolarCloud平台的通信依赖,提升离网模式可靠性。建议将该滑模控制策略与现有VSG技术融合,优化ST储能系统在弱电网和孤岛模式下的动态响应性能,特别适用于海岛、矿山等复杂线路阻抗场景。