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风电变流技术
★ 5.0
一种协调多台发电机组抑制电力系统自然振荡的自适应特殊保护方案
An Adaptive Special Protection Scheme Coordinating Multiple Generation Units for Damping Power System Natural Oscillations
| 作者 | Tor Inge Reigstad · Salvatore D'Arco · Santiago Sanchez-Acevedo |
| 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 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 特殊保护方案 自适应功率振荡阻尼 自适应时间延迟补偿器 低频自然振荡 功率振荡抑制 |
语言:
中文摘要
本文提出一种特殊保护方案(SPS),通过在风电场或同步发电机中启用选定的自适应功率振荡阻尼(APOD)控制器来抑制电力系统的自然振荡。该方案由在线振荡检测算法触发,并集成了自适应时延补偿器(ATDC)以应对控制回路中的时延问题。通过新英格兰39节点系统的数值仿真和北欧44节点系统的硬件在环实验验证,结果表明所提SPS能显著增强低频振荡阻尼,避免振荡失稳,且可实时运行并有效处理来自PMU、通信与计算的时延,具备作为调度员阻尼功率振荡的自动化协调工具的可行性。
English Abstract
This paper presents a special protection scheme (SPS) that mitigates natural oscillations in the power system by enabling selected adaptive power oscillation damping (APOD) controllers in wind farms or synchronous generators. The SPS activation is triggered by an online power oscillation detection algorithm. Furthermore, to tackle the intricacies of time delays within the control system, an adaptive time delay compensator (ATDC) has been integrated into the SPS control scheme. The SPS is tested on the New England 39 bus system by numerical simulations and in the Nordic 44 system by experimental testing with a hardware-in-the-loop approach. The numerical results show that the proposed SPS can increase the damping of low-frequency natural oscillations (LFOs) significantly and even avoid unstable situations with growing oscillations. Moreover, the laboratory validation demonstrates that the system is able to run in real-time and that the time delays caused by PMU measurements, communication, and computation can be handled correctly. Thus, the proposed SPS concept can possibly be implemented to serve as an additional and automatic tool for the system operators to damp natural power oscillations by coordinated control of multiple sources.
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SunView 深度解读
该自适应特殊保护方案对阳光电源的储能和风电产品线具有重要参考价值。特别是其自适应功率振荡阻尼(APOD)控制技术可应用于ST系列储能变流器和大型储能系统PowerTitan的VSG控制中,提升系统稳定性。其在线振荡检测算法和时延补偿技术可优化储能/风电产品的并网性能,增强低频振荡抑制能力。这对完善阳光电源构网型储能产品的电网支撑功能、提高大规模新能源并网稳定性具有重要启发。建议在ST储能产品的VSG控制器中集成类似的自适应振荡抑制功能,进一步提升产品竞争力。