On-line Evaluation Method of CVT Internal Insulation State Based on Support Vector Machine

Yunwu Xu, Hongbin Li, Qing Chen, Chuanji Zhang, Jing Zhang, Yuxuan Zhang
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Abstract

Capacitive voltage transformer (CVT) is a measurement device widely used in high-voltage power grids. Evaluating CVT's internal insulation online and replacing faulty device are critical for power grid's safety. However, the existing online evaluation methods mainly relaying on installing auxiliary sensors inside the device, which may change its internal electric field distribution and makes the device easy to be broken. In response to these challenges, an online evaluation method for the internal insulation state of CVT based on its measurements is proposed. This method explores the internal connection between the internal insulation state of CVT and its measurement error information, and then inverts the change of the internal insulation state of the CVT by monitoring the change of the measurement information of the CVT, and realizes the real-time online evaluation of the internal insulation state of the CVT based on the support vector machine. Experimental analysis shows that this method can accurately evaluate the internal insulation state of the CVT without the need for power outages and external sensors.
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基于支持向量机的CVT内部绝缘状态在线评估方法
电容式电压互感器(CVT)是一种广泛应用于高压电网的测量装置。在线评估无级变速器的内部绝缘,及时更换故障装置,对电网安全至关重要。然而,现有的在线评估方法主要依靠在设备内部安装辅助传感器,这可能会改变其内部电场分布,使设备容易损坏。针对这些挑战,提出了一种基于实测数据的无级变速器内部绝缘状态在线评估方法。该方法探索无级变速器内部绝缘状态与其测量误差信息之间的内在联系,然后通过监测无级变速器测量信息的变化来反演无级变速器内部绝缘状态的变化,实现基于支持向量机的无级变速器内部绝缘状态的实时在线评估。实验分析表明,该方法能够准确地评估无级变速器的内部绝缘状态,而不需要断电和外部传感器。
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