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低电网短路比下跟网型逆变器资源的自适应控制
Adaptive Control of Grid-Following Inverter-Based Resources Under Low Network Short Circuit Ratio
| 作者 | Shyamal S. Chand · Branislav Hredzak · Majid Farhangi · Ravneel Prasad · Dhirendran Munith Kumar · Adriano Fagiolini |
| 期刊 | IEEE Transactions on Industry Applications |
| 出版日期 | 2024年12月 |
| 技术分类 | 控制与算法 |
| 技术标签 | 跟网型GFL |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 逆变器资源 电网短路比 弱电网 前馈自适应控制 直流母线电压 |
语言:
中文摘要
基于逆变器的电源的稳定性和动态响应在很大程度上受电网参数不确定性的影响。电网短路比(SCR)是评估电力网络内任意位置电网强度的标准指标。高短路比表明电网强劲,而低短路比则意味着电网脆弱,更易受干扰,且可能影响并网逆变器的稳定性。弱电网可能导致公共连接点注入电流的振荡周期延长,并损害直流母线电压的完整性。本研究提出了一种前馈自适应控制方案,该方案与电流环比例 - 积分控制器协同工作,产生补偿电压,以确保电压定向控制的逆变器在极弱电网场景下可靠运行。自适应补偿器基于无差拍控制原理设计,并利用电网阻抗信息实时确定前馈电压。对比结果表明,该方法在暂态和故障情况下,能有效抑制低短路比电网中的振荡,缩短直流母线电压、有功和无功功率的调节时间,同时将电流总谐波畸变降至最低。所提出的自适应前馈控制策略还在一个低压试验台上进行了实验验证,实验涵盖了包括暂态、运行设定点变化和低电压穿越等多种动态工况。
English Abstract
The stability and dynamic response of inverter-based resources are greatly influenced by uncertain grid parameters. The grid short circuit ratio (SCR) serves as a standard metric for assessing the strength of the network at any location within the electrical power network. A high SCR suggests a strong grid, whereas a low SCR indicates a fragile grid, more prone to disturbances and likely to affect the stability of grid-feeding inverters. Weak grids may lead to extended oscillatory periods in the injected currents at the point of common coupling and compromise the DC link voltage integrity. This research introduces a feedforward adaptive control scheme that operates alongside the current loop proportional-integral controllers, producing a compensating voltage to guarantee the dependable functioning of the voltage-oriented controlled inverters in extremely weak grid scenarios. The adaptive compensator is formulated on the basis of the deadbeat control principle and utilizes the information of the grid impedance to determine the feedforward voltage in real time. Comparative results demonstrate the effectiveness of this method in damping oscillations and shortening the settling time for the DC link voltage, active and reactive power in low SCR grids under transients and faults while minimizing the current total harmonic distortion. The proposed adaptive feedforward control strategy is also experimentally verified on a low voltage test rig under several dynamic conditions including transients, varying operating setpoints, and low voltage ride-through.
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SunView 深度解读
从阳光电源的业务视角来看,该论文提出的自适应前馈控制技术对我们在弱电网环境下的逆变器产品具有重要应用价值。随着全球光伏和储能系统的大规模部署,特别是在电网末端、偏远地区及新兴市场,低短路比(SCR)弱电网场景日益普遍,这正是制约我们并网逆变器稳定运行的关键技术瓶颈。
该研究基于无差拍控制原理,通过实时获取电网阻抗信息生成补偿电压,与传统PI控制器协同工作,能够有效抑制弱电网条件下的电流振荡,缩短直流母线电压、有功和无功功率的稳定时间,同时降低电流总谐波畸变率。这与我们在1500V大功率光伏逆变器和储能变流器PCS产品线的技术需求高度契合,特别是在应对电网扰动和低电压穿越(LVRT)等严苛工况时,该技术可显著提升系统鲁棒性。
从技术成熟度评估,该方案已完成低压实验平台的多工况验证,包括暂态响应、工作点变化和LVRT测试,具备较好的工程化基础。对阳光电源而言,关键机遇在于将此自适应控制算法集成到现有的并网控制策略中,增强产品在SCR<2的极弱电网场景下的适应能力,这对拓展中东、非洲、拉美等电网基础设施薄弱地区的市场份额具有战略意义。
技术挑战主要集中在电网阻抗的实时准确辨识、算法在兆瓦级大功率设备上的计算效率优化,以及与我们现有的有源阻尼、虚拟同步机等控制技术的融合协调。建议将该技术纳入下一代智能逆变器控制平台的研发路线图,通过仿真验证和现场试点逐步推进产业化应用。