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Effects of AC modulation frequency and amplitude on kerr electro-optic field mapping measurements in transformer oil

机译:交流调制频率和幅度对变压器油中克尔电光场测绘的影响

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Kerr electro-optic field mapping technique with ac modulation is used in this work to measure the electric field distributions between parallel plate copper electrodes in transformer oil. The ac modulation method maximizes measurement sensitivity for small Kerr constant material like transformer oil. The measurements are conducted with ac peak-to-peak voltages set to various percentages of the dc voltages 1 kV–18 kV, with modulation frequencies in the range of 10 Hz–10 kHz, and at 3 different positions between the parallel plate electrodes with 2 mm spacing. When the dc voltage is low, there exist a wide range of modulation frequencies and amplitudes that ensure the accuracy of the measured results. When there is insignificant space charge effect a modulation frequency as low as 10 Hz and ac peak-to-peak voltage comparable to the dc voltage can still yield data of high accuracy. Some unreliable measurements occur at relatively low modulation frequencies and high ratios of ac to dc voltages when higher dc high voltage is applied, which establishes a space charge distribution in the gap which is disturbed by the ac modulation voltage. To increase the accuracy and reliability of the measurements the modulation frequency is increased and the applied ac voltage is made as small as possible. It is shown that an increasingly limited range of modulation frequencies and ac voltages is allowed for accurate measurements as the dc high voltage is increased. Although a photo diode and a lock-in amplifier are used in the measurements as light detector, this work identifies the requirements on key parameters, such as maximum frame rate and sensitivity, when upgrading to modern CCD cameras in the future work.
机译:在这项工作中,使用具有交流调制的Kerr电光场映射技术来测量变压器油中平行板铜电极之间的电场分布。交流调制方法最大程度地提高了对较小Kerr常数材料(如变压器油)的测量灵敏度。测量时使用的交流峰峰值电压设置为1 kV– 18 kV直流电压的不同百分比,调制频率在10 Hz–10 kHz范围内,并在平行板电极之间的3个不同位置2毫米间距。当直流电压较低时,存在广泛的调制频率和幅度范围,可确保测量结果的准确性。当没有明显的空间电荷效应时,低至10 Hz的调制频率和与直流电压相当的交流峰峰值电压仍然可以产生高精度的数据。当施加较高的直流高压时,某些相对不可靠的测量结果会在较低的调制频率和较高的交流电压与直流电压的比率下发生,这会在间隙中建立空间电荷分布,该空间电荷分布会受到交流调制电压的干扰。为了提高测量的准确性和可靠性,增加了调制频率,并使施加的交流电压尽可能小。结果表明,随着直流高压的增加,调制频率和交流电压的范围越来越有限,以便进行精确测量。尽管在测量中使用了一个光电二极管和一个锁相放大器作为光检测器,但这项工作确定了在未来工作中升级到现代CCD相机时对关键参数的要求,例如最大帧频和灵敏度。

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