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一种用于海上风电低频输电系统的海底电缆方向纵联保护
A Novel Directional Pilot Protection of Submarine Cables for Low Frequency Transmission System With Offshore Wind Power
| 作者 | Xiaoping Gao · Guobing Song · Chenhao Zhang · Xiaoning Kang · Jifei Yan |
| 期刊 | IEEE Transactions on Power Delivery |
| 出版日期 | 2024年11月 |
| 技术分类 | 风电变流技术 |
| 技术标签 | 多电平 电网侧储能 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 低频输电系统 传统保护 阻抗构建方法 方向纵联保护 选相方法 |
语言:
中文摘要
低频输电系统(LFTS)已成为远距离海上风电输送的优选方案。然而,由于两端均连接电力电子装置,基于工频相量的传统保护可能性能不佳。本文分析了传统保护的适应性,发现典型控制策略会削弱故障特征。为此,提出电网侧变换器(GSC)与模块化多电平矩阵变换器(M3C)的阻抗构建方法,以增强内外部故障的特征差异。进而提出一种方向纵联保护方案:不对称故障下,负序阻抗角由电流环参考值决定;对称故障下,调节GSC电流环参考系数可提升高阻故障下的性能。通过构建不同故障类型的序网,提出基于电压幅值的选相方法。PSCAD/EMTDC仿真结果表明,所提阻抗构建方法能有效支持故障识别,且保护在多种故障场景下表现良好。
English Abstract
Low frequency transmission system (LFTS) has become a competitive method for long-distance offshore wind power transmission. However, traditional protections based on the fundamental frequency phasor may have poor performance since both ends of submarine cables connect with power electronic devices. First, the adaptability of traditional protections is analyzed. It is found that fault characteristics are weakened by typical control strategies. To enhance the characteristic difference between internal and external faults, an impedance construction method for grid-side converter (GSC) and modular multilevel matrix converter (M3C) is proposed. Then this paper proposes a directional pilot protection. For asymmetrical faults, the angle of negative-sequence impedance of GSC and M3C is determined by references of current loop controller. For symmetrical faults, adjusting coefficients of current loop reference in GSC helps the protection perform well under high-resistance faults. Building the sequence networks under different fault types, a phase selection method based on voltage magnitude is proposed. Finally, simulation tests are conducted in PSCAD/EMTDC, and the results demonstrate that the proposed impedance construction method can provide effective support for fault identification and the proposed protection performs well under various fault scenarios.
S
SunView 深度解读
该研究对阳光电源的海上风电和储能产品线具有重要参考价值。文中提出的GSC与M3C阻抗构建方法可应用于ST系列储能变流器和大型储能系统的保护设计,特别是在构建电网故障特征识别方面。研究的方向纵联保护方案对阳光电源开发新一代海上风电并网变流器提供了创新思路,尤其是在不对称故障和高阻故障场景下的保护策略优化。该技术可提升PowerTitan等大型储能系统的电网适应性,并为iSolarCloud平台增添新的故障诊断算法支持。建议在ST系列产品中验证该保护方案的实用性,进一步提升阳光储能产品在特殊电网环境下的可靠性。