变压器有载分接开关测试仪校准装置的研制
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作者单位:

1.中国测试技术研究院电子研究所 成都 610021; 2.成都理工大学核技术与自动化工程学院 成都 610051

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TM862

基金项目:

四川省重大科技专项(2018TZDZX0002)、四川省重大科技专项(2019ZDZX0034)、四川省科技项目(2018GFW0187)、四川省基本科研业务费(2021JDKY0001)、2020年内江市科技孵化和成果转化专项(2020KJFH003)资助


Development of calibration device for transformer on load tap changer tester
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Affiliation:

1.Institute of Electronics National Institute of Measurement and Testing Technology,Chengdu 610021, China; 2.The College of Nuclear Technology and Automation Engineering,Chengdu University of Technology,Chengdu 610051,China

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    摘要:

    传统的变压器有载分接开关测试仪校准方法存在难以同步校准过渡电阻、过渡时间、同期性等难题。文中设计了三路基于FPGA控制DAC模拟不同电阻的可变电阻模块,经过频率补偿可变电阻模块可以实现电阻的迅速切换,实现了模拟过渡电阻、过渡时间和同期性的同步校验,同时设计了过压、过流和防反接的保护电路,提高了整个装置的可靠性。经过测试,该校准装置模拟的过渡电阻最大允许误差±(0.2%RD+5 mΩ),过渡时间、同期性绝对误差小于10 μs,完全满足实验室校准需求,解决了变压器有载分接开关测试仪校准难题。

    Abstract:

    The traditional calibration method of transformer on-load tap-changer tester has difficulties in synchronous calibration of transition resistance, transition time and synchronization. In this paper, three variable resistor modules based on FPGA control DAC are designed to simulate different resistors. After frequency compensation, the variable resistor module can realize the rapid switching of resistors, a6nd realize the synchronous verification of analog transition resistance, transition time and synchronization. At the same time, the protection circuits of overvoltage, overcurrent and antireverse connection are designed to improve the reliability of the whole device. After testing, the maximum allowable error of transition resistance simulated by the calibration device is better than ±(0.2% RD+5 mΩ), and the absolute error of transition time and synchronization is less than 10 μs, which fully meets the needs of laboratory calibration and solves the calibration problem of transformer on-load tap-changer tester.

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引用本文

郝丹,侯琼,肖鹏.变压器有载分接开关测试仪校准装置的研制[J].电子测量技术,2023,46(7):165-171

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  • 在线发布日期: 2024-02-18
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