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面向单相跟网型配电逆变器的韧性自适应控制
Resilient Adaptive Control for Single-Phase Grid Following Distribution Inverters
| 作者 | Sergio A. Dorado-Rojas · John Cortés-Romero · Zongjie Wang |
| 期刊 | IEEE Transactions on Power Delivery |
| 出版日期 | 2025年4月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 并网逆变器 储能系统 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 单相并网逆变器 谐振控制器 电网频率变化 自适应内模 弹性控制策略 |
语言:
中文摘要
针对单相并网逆变器的频域控制设计通常假设电网频率接近额定值。谐振控制器虽因内嵌电网频率正弦信号模型而具备良好鲁棒性,但当电网频率偏移时性能难以保证,尤其在配电网中非传统可再生能源渗透率不断提高的背景下,频率偏移愈发频繁。本文提出一种新型控制策略,通过引入跟随电网频率自适应调整控制增益的内部模型,确保系统在任意频率变化下仍具优良性能。该控制器无需预知频率偏移边界,具有真正韧性,可在异常频率工况下可靠运行。
English Abstract
Most frequency-domain control design methods for single-phase grid-connected inverters are based on the assumption that the grid's frequency remains close to the nominal value. Resonant controllers have been demonstrated to be an effective solution, attaining robust performance thanks to the embedded internal model of a sinusoid at the grid frequency. However, the performance of these compensators is not guaranteed as the grid frequency deviates from its nominal value, which is becoming an even likelier condition with the growing penetration of non-conventional renewables at the distribution level. This paper introduces a novel control strategy that ensures performance despite arbitrary grid frequency variations. The key feature of the controller is introducing an adaptive internal model that follows the grid's frequency and adjusts the control gains accordingly. The controller design requires no information about bounds on frequency excursions, which is a necessary assumption for designing robust controllers. Hence, it is called resilient since it operates properly for abnormal frequency excursions.
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SunView 深度解读
该韧性自适应控制技术对阳光电源ST系列储能变流器和SG系列单相光伏逆变器具有重要应用价值。当前产品的谐振控制器在电网频率偏移时性能下降,该技术通过自适应内部模型实时跟踪频率变化,可显著提升配电侧设备在弱电网和高渗透率场景下的并网稳定性。特别适用于户用储能系统和分布式光伏,无需预设频率偏移边界即可保证控制性能,增强系统在异常工况下的韧性。建议将该自适应算法集成到现有GFL跟网控制架构中,优化电流环控制器设计,提升产品在电网频率波动频繁地区的适应能力和市场竞争力。