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用于增强频率响应的复合功率-频率同步控制环
Composite Power-Frequency Synchronization Loop for Enhanced Frequency Response Considering Current and Power Limits of Grid-Forming Converters
| 作者 | Tianyi Xu · Shan Jiang · Ye Zhu · Georgios Konstantinou |
| 期刊 | IEEE Transactions on Power Electronics |
| 出版日期 | 2024年12月 |
| 技术分类 | 系统并网技术 |
| 技术标签 | 构网型GFM |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 电网形成控制 频率响应服务 电流和功率限制器 复合功率 - 频率同步环 同步稳定性 |
语言:
中文摘要
构网型(GFM)控制是一种很有前景的解决方案,可在基于逆变器的电源占比不断增加的低惯量电力系统中提供阻尼和频率支撑服务。本文研究了在频率扰动期间,考虑到变流器及其底层电源的物理限制(即电流和功率额定值)影响的情况下,GFM变流器所能提供的频率响应服务。具体而言,用于保护功率半导体的电流限幅器会限制GFM变流器可实现的输出功率范围,并使其在发生大频率扰动时容易失去与电网的同步。加入功率限幅器可确保在扰动期间不超过电流限制的情况下达到稳定平衡点,但会通过降低有效阻尼系数对频率稳定性产生负面影响。为解决这些问题,本文提出了一种复合功率 - 频率同步环(CPFSL),作为广泛采用的功率同步环(PSL)的替代方案。所提出的CPFSL可与电流和功率限幅器协同工作,并通过将基于锁相环的下垂项纳入传统PSL来提高GFM变流器的阻尼系数。采用CPFSL的GFM变流器能够提供自适应频率响应,充分利用直流侧能源的可用功率裕度,同时在极端电网事件期间保持与电网的同步。与其他GFM控制方法的比较表明,CPFSL在严重频率事件期间的同步稳定性得到了提高。此外,通过一个并网GFM变流器的硬件装置进行实验,验证了基于CPFSL的GFM变流器在频率扰动、电压扰动以及弱电网和孤岛条件下的响应情况。
English Abstract
Grid-forming (GFM) control is a promising solution to provide damping and frequency support services in low-inertia power systems with an increasing share of inverter-based resources. This article investigates the available frequency response services from GFM converters during frequency disturbances, considering the impact of physical limitations of the converter and underlying power source (i.e., current and power ratings). Specifically, current limiters that are used for protection of power semiconductors restrict the achievable output power range of GFM converters and make them susceptible to loss of grid synchronization during large frequency disturbances. The inclusion of power limiters guarantees a stable equilibrium point without exceeding the current limit during disturbances, but negatively impacts frequency stability by reducing the effective damping factor. To address these problems, a composite power-frequency synchronization loop (CPFSL) is proposed as an alternative to the widely adopted power-synchronization loop (PSL). The proposed CPFSL can coordinate with current and power limiters, and enhances the damping factor of GFM converters by incorporating a phase-locked loop-based droop term into the conventional PSL. GFM converters with the CPFSL are capable of providing adaptive frequency response, which fully utilizes the available power headroom of dc-side energy sources, while maintaining grid synchronization during extreme grid events. A comparison with other GFM control methods demonstrates the improved synchronization stability of the CPFSL during severe frequency events. Furthermore, the response of CPFSL-based GFM converters during frequency disturbances, voltage disturbances, and under weak grid and islanded conditions is verified experimentally using a hardware setup of a grid-connected GFM converter.
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SunView 深度解读
从阳光电源的业务视角来看,这项针对构网型(GFM)变流器的复合功率-频率同步环路技术具有重要的战略价值。随着全球新能源渗透率持续提升,电网惯量不足带来的频率稳定性问题日益突出,该技术直接回应了阳光电源在光伏逆变器和储能系统产品线面临的核心挑战。
该研究的核心创新在于解决了传统GFM控制中电流限幅器与频率响应能力之间的矛盾。对于阳光电源的1500V大功率逆变器和储能变流器产品,功率半导体的保护与电网同步稳定性一直是技术平衡的难点。论文提出的CPFSL方案通过引入基于锁相环的下垂控制项,能够在极端频率扰动下保持并网同步,同时充分利用直流侧能源的可用功率裕度,这对提升阳光电源储能系统在电网调频服务中的竞争力具有直接意义。
从应用前景看,该技术成熟度较高,已通过硬件实验验证了在弱电网、孤岛模式及多种扰动场景下的有效性,与阳光电源现有的PowerTitan储能系统和SG350HX等高功率逆变器产品的技术路线高度契合。特别是在澳大利亚、欧洲等要求强制性频率响应能力的市场,该技术可显著增强产品的电网适应性和增值服务能力。
技术挑战主要集中在算法与现有控制平台的集成优化、不同工况下参数自适应整定,以及与电网侧保护装置的协调配合。建议阳光电源的中央研究院评估该技术在下一代构网型储能变流器中的应用可行性,重点关注其在高比例新能源场景下提升系统阻尼和频率支撑能力的商业价值,这将成为公司在全球储能和微电网市场的重要技术差异化优势。