← 返回
基于数字孪生的风力发电机组故障诊断与预测性维护
Adaptive High-Performance Optimization Tool for Real-Time Operation of Renewable-Based Virtual Power Plants
| 作者 | Oluwaseun Oladimeji · Álvaro Ortega · Lukas Sigrist · Bogdan Marinescu · Vinu Thomas |
| 期刊 | IEEE Access |
| 出版日期 | 2025年1月 |
| 技术分类 | 储能系统技术 |
| 技术标签 | 储能系统 可靠性分析 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 可再生虚拟电厂 实时运行 自适应优化算法 辅助服务 可再生能源集成 |
语言:
中文摘要
风力发电机组故障会导致显著经济损失,预测性维护对提升设备可用性至关重要。本文提出基于数字孪生的故障诊断框架,通过物理模型和数据驱动方法的融合,实现关键部件的健康状态评估和故障预警。
English Abstract
This paper presents an adaptive high-performance optimization tool for the real-time operation of Renewable-based Virtual Power Plants (RVPPs). The increasing integration of Renewable Energy Sources (RESs) into power systems introduces challenges due to their intermittent nature. Aggregating RES units into RVPPs creates a more controllable and competitive entity for energy market participation. However, real-time operation, particularly for ancillary services like Frequency Containment Reserve and automatic Frequency Restoration Reserve, remains challenging since the offered delivery of such ancillary services needs to be guaranteed at all times. In this paper, the proposed Adaptive High-performance Optimal Real-time operation Algorithm (AHORA) addresses these challenges by executing re-dispatches every four seconds, mitigating internal and external disturbances while ensuring compliance with System Operator requirements. The framework supports both event-driven and periodic activation strategies, enabling dynamic adaptation to system changes. Real-time implementation of the operation framework is carried out using OPAL-RT real-time simulator, verifying the RVPP’s ability to meet the demands of real-time applications effectively. Test results demonstrate that AHORA achieves a minimum of 85% of the required regulation in worst case disturbances and maintains service provision within a stringent 4-second window. The findings demonstrate AHORA’s practical applicability in enhancing the reliability and efficiency of renewable energy integration into modern power grids, providing a robust solution for managing the complexities of RVPP real-time operation.
S
SunView 深度解读
该数字孪生技术可应用于阳光电源风电变流器的健康管理系统。通过虚实融合的故障诊断技术,实现风电场设备的预测性维护,降低非计划停机损失,提升风电系统可利用率,为智慧风电场运维提供数字化支撑。