Abstract

OBJECT. When developing DC test voltage sources to assess the insulation quality of high-voltage equipment, the task is to measure the leakage current flowing through the test object. METHODS. When solving the problem the authors proposed a technical solution for measuring the current flowing through the test when testing insulation with rectified voltage, which uses a precision resistor, an isolating amplifier, a 2-channel operational amplifier with a unipolar power supply, zero voltage drift, and an ADC of a microcontroller.RESULTS. The article in the course of the study of the stand of the circuit for measuring the leakage current flowing through the tested object when testing the insulation with rectified voltage, an experimental industrial sample was created, which makes it possible to measure the leakage current value in the range from 10 μA to 1000 μA. The use of the developed circuit for measuring the current flowing through the test object when testing the insulation with rectified voltage makes it possible to calculate the DC component of the voltage signal from the alternating signal and in real time, and, therefore, to quickly monitor the current in high-voltage circuits for continuous monitoring. CONCLUSION. So the introduction of this sample will make it possible, on its basis, to create a number of digital measuring microammeters that make it possible to measure the leak-age current in high-voltage test installations for testing the insulation of objects from 15 nF to 200 nF, in the leakage current measurement range from 10 μA to 1000 μA. The results obtained can be used in high voltage technology to study circuits for measuring the leakage current flowing through the test object when testing insulation with rectified voltage.

Highlights

  • Voltage waveform on a precision resistor of прецизионном резисторе типа С2-29В при токе type C2-29V at a leakage current of 100 M утечки 100 мкА

  • Pilot sample measurement of leakage измерения тока утечки, протекающего через current flowing through the test object during the испытуемый объект при испытании изоляции insulation test high DC voltage: повышенным выпрямленным напряжением: 1 Plata No 1 consisting of amplifier No 1 insulation

  • Mukhametshin – Ufa State Petroleum Technical University (USPTU)

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Summary

Расчет и выбор прецизионного резистора

Расчётное падение напряжения на прецизионном резисторе типа С2-29В:. где I – ток протекающего через испытуемый объект, мкА R – сопротивление прецизионного резистора типа С2-29В, Ом. На рисунке 6 представлена осциллограмма напряжения (переменная составляющая сигнала при токе 100 мкА) на прецизионном резисторе типа С2-29В при испытании объекта ёмкостью 15 нФ. Voltage waveform on a precision resistor of прецизионном резисторе типа С2-29В при токе type C2-29V at a leakage current of 100 M утечки 100 мкА. На рисунке 8 представлены осциллограммы напряжений на выходе усилителя No2 подаваемые на вход АЦП микроконтроллера типа STM32L476VGT6. На рисунке 9 представлена экспериментальная зависимость уровней квантования от тока утечки на образцовом микроамперметре в режиме калибровки для экспериментального образца. Обсуждение результатов По результатам исследования создан опытно-промышленный образец схемы измерения тока утечки, протекающего через испытуемый объект при испытании изоляции повышенным выпрямленным напряжением, представленный на рисунке 10. Pilot sample measurement of leakage измерения тока утечки, протекающего через current flowing through the test object during the испытуемый объект при испытании изоляции insulation test high DC voltage: повышенным выпрямленным напряжением:

Plata No 1 consisting of amplifier No 1 insulation
IEC 61000-2-2
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