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Frequency domain spectroscopy of oil-paper insulation under sinusoidal and square wave excitations

机译:正弦和方波激发下的油纸绝缘频域光谱

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It is well known that the sinusoidal voltages over a wide frequency range are used in laboratory for Frequency Domain Spectroscopy of oil-paper insulation. But in practice, when a transformer remains in operating condition, the insulation inside the transformer is often stressed by the voltage that deviate significantly from sinusoid due to presence of harmonics. So, use of non-sinusoidal excitation voltage is required in advanced diagnostic technique for proper monitoring of insulation condition. Considering the facts, an arrangement has been made in laboratory that can generate sinusoidal as well as non-sinusoidal excitations over a wide frequency range. Square wave excitation has been chosen here as non-sinusoidal excitation. Samples with different preset moisture contents have been prepared in the laboratory for experimental purposes that emulate the oil-paper insulation of actual power transformer. Sinusoidal as well as square wave excitations over a wide frequency range are applied across the samples under controlled environmental conditions and corresponding dielectric response currents are measured. From applied excitation voltages and corresponding response currents, dielectric dissipation factors are calculated for both excitations. The parameters are then plotted and compared with each other. It may be observed that use of square wave excitation provides better information regarding the condition of insulation.
机译:众所周知,在宽频率范围内的正弦电压用于油纸绝缘的频域光谱实验室。但在实践中,当变压器保持在运行条件下时,变压器内的绝缘通常会受到由于谐波的存在而显着偏离正弦曲线的电压。因此,在先进的诊断技术中需要使用非正弦励磁电压,以适当监测绝缘条件。考虑到事实,在实验室中已经在实验室中进行了安排,可以在宽频率范围内产生正弦和非正弦激励。方形波激发已被选中作为非正弦激发。实验室已经在实验室中制备具有不同预设水分含量的样品,以模拟实际电力变压器的油纸绝缘材料。在受控环境条件下施加宽频率范围内的正弦波以及正方形波激发,并测量相应的电介质响应电流。从施加的激励电压和相应的响应电流,介电耗散因子用于两个激动。然后绘制参数并彼此比较。可以观察到方波激励的使用提供了关于绝缘条件的更好信息。

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