PERFORMANCE ANALYSIS OFAIR-CORE CURRENT TRANSFORMER
Zhao Xicai
Abstract
Zhao Xicai
Abstract
The principle, structure and output signal of an air-core coil current transformer are different with that of a traditional current transformer of the inductive type. The performance of an air-core coil current transformer could be affected by temperature and disturbance magnetic field. In this paper, the influences of temperature and disturbance magnetic field to an air-core coil current transformer are analyzed in detail. Some measures to improve the performance of an air- core coil current transformer are proposed. According to the improving measures, an air-core coil current transformer that can be used in 220kV GIS has been developed and tested. Testing results showed that the influences of disturbance magnetic field and temperature to the improved transformer are very small, the frequency characteristic and transient behavior of the transformer are perfect, and the accuracy of the transformer is better than class 0.2.
OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
The principle, structure and output signal of an air-core coil current transformer are different with that of a traditional current transformer of the inductive type. The performance of an air-core coil current transformer could be affected by temperature and disturbance magnetic field. In this paper, the influences of temperature and disturbance magnetic field to an air-core coil current transformer are analyzed in detail. Some measures to improve the performance of an air- core coil current transformer are proposed. According to the improving measures, an air-core coil current transformer that can be used in 220kV GIS has been developed and tested. Testing results showed that the influences of disturbance magnetic field and temperature to the improved transformer are very small, the frequency characteristic and transient behavior of the transformer are perfect, and the accuracy of the transformer is better than class 0.2.
Key concepts: Delta-wye transformer, Current transformer, Transformer effect, Rotary variable differential transformer, Linear variable differential transformer, Energy efficient transformer, Electromagnetic coil, Distribution transformer