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利用变流器嵌入式测试风电升压变压器层间铁芯绝缘
Converter Embedded Testing of Inter-Laminar Core Insulation of Step-Up Transformers for Wind Energy Applications
| 作者 | Byambasuren Battulga · Muhammad Faizan Shaikh · Mohamed Osama · Sang Bin Lee |
| 期刊 | IEEE Transactions on Power Delivery |
| 出版日期 | 2024年10月 |
| 技术分类 | 风电变流技术 |
| 技术标签 | 储能系统 工商业光伏 |
| 相关度评分 | ★★★★★ 5.0 / 5.0 |
| 关键词 | 风力发电机变压器 远程自动化评估 层间绝缘测试 背靠背变流器 铁芯故障检测 |
语言:
中文摘要
用于风力发电升压的变压器因恶劣运行环境故障率较高,且因其位置偏远难以进行现场定期检测,亟需远程自动化状态评估手段。本文提出一种基于背靠背变流器的离线检测方法,利用风机中已有的变流器作为测试设备,在机组离网时向升压变压器注入测试信号,实现对铁芯层间绝缘状况的远程自动检测。实验在380/690 V变压器上模拟层间绝缘故障,验证了该方法的有效性。结果表明,该方法对铁芯故障的检测灵敏度与铁损测试及商用频率响应分析设备相当,可实现可靠、自动化的风电变压器铁芯状态监测。
English Abstract
Transformers used in wind power applications for stepping up the low voltage output of wind generators are known to have high failure rate due to the harsh operating conditions and environment. It is a challenge to perform on-site tests regularly because wind turbines are difficult to access due to their remote location. This makes remote and automated condition assessment of wind turbine transformers (WTT) crucial for preventing failure. In this paper, the feasibility of a new off-line method for testing the quality of the inter-laminar insulation of the step-up transformer core using the back-to-back converter is evaluated. The idea is to use the converter available in the wind turbine as the test equipment for injecting test signals into the WTT for remote and automated testing, whenever the wind turbine is disconnected from the grid. It is shown that inter-laminar core faults can be clearly detected with sensitivity comparable to the core loss test and commercial FRA equipment. An experimental study was performed on a 380/690 V transformer under emulated inter-laminar insulation fault conditions to verify the new test concept. It is shown that the proposed method can provide remote, automated testing of WTTs for reliable detection of core faults.
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SunView 深度解读
该变流器嵌入式测试技术对阳光电源的储能和风电产品线具有重要应用价值。可集成到ST系列储能变流器和风电变流器中,利用现有功率变换电路实现对系统内变压器的自动化状态监测。这种创新方法可提升PowerTitan等大型储能系统的可靠性,降低运维成本。建议在iSolarCloud平台增加变压器健康评估功能,结合预测性维护算法,实现设备全生命周期管理。该技术也可推广到工商业光伏系统的箱变监测,为SG系列逆变器增添智能化功能。这对提升阳光电源产品的智能运维水平和市场竞争力具有积极意义。