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Studies in electromagnetic compatibility of optical and digital current and voltage transformers

机译:光学和数字电流和电压变压器的电磁兼容性研究

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The use of microprocessor devices for relay protection and automation, devices for measuring and determining electric power quality permits the introduction and development of digital circuits leading from primary current and voltage transformers. The use of optical channels for digital circuits addresses the problem of offsetting electromagnetic interference and voltage shift. Creating optical and digital current and voltage transformers with digitization of signals already at high measuring transformer voltage is the best solution for the above problem of mechanical engineering in the field of electromagnetic compatibility of high voltage measuring transformers. However, a difficulty arises in ensuring electromagnetic compatibility of sensors and microelectronic equipment adjoining live parts. The present study is devoted to examining the impact of electromagnetic fields on sensors and solving the problems of electromagnetic compatibility of optical and digital current and voltage transformers.
机译:使用微处理器装置进行继电器保护和自动化,用于测量和确定电能质量的装置允许从初级电流和电压变压器引入的数字电路引入和开发。用于数字电路的光学通道的使用解决了偏移电磁干扰和电压移位的问题。创建光学和数字电流和电压互感器,具有高测量变压器电压的信号数字化是高压测量变压器电磁兼容性领域的上述机械工程问题的最佳解决方案。然而,在确保电动机和微电子设备相邻的实时部件的电磁兼容性时出现了困难。本研究致力于检查电磁场对传感器的影响,解决光学和数字电流和电压变压器的电磁兼容性问题。

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