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A New Type of VLF Sinusoidal Waveform Generator Used for AC Withstand Voltage Testing of Power Cables

机译:一种新型的VLF正弦波形发生器,用于电力电缆的AC耐压测试

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Power cables play an important role in power grid, among which XLPE cables are widely used. Meanwhile, insulation failures of cables have become a severe safety hazard. AC withstand voltage testing is an effective method to assess the overall insulation level of power cables before they are put into operation. The very low frequency (VLF) testing equipment has been popular in recent years used for ac withstand voltage testing due to its portability. This paper presents a new type of VLF sinusoidal waveform generator which can generate a sinusoidal waveform at 0.1 Hz. Compared with other conventional VLF generators, the proposed design benefits at simple structure and novel control. The equipment consists of a bipolar charging circuit, a discharging circuit, a polarity conversion switch, a resistance voltage divider and the control system, and the key to generate VLF sinusoidal waveform is hysteresis control technology. This paper builds the simulation model of VLF generator using the SIMULINK software to verify the feasibility of system topology and control strategy. The simulation result shows that this design of VLF generator can generate a sinusoidal waveform at 0.1 Hz and its total harmonic distortion (THD) value is less than 5%. In the meantime, this paper studies the effect of some circuit parameters on the output waveform to get their optimal values by the SIMULINK software. In the end, an experiment platform was built in the laboratory to verify the simulation result, and the experimental result shows that this VLF generator can generate a sinusoidal waveform at 0.1 Hz and its THD value can meet the requirement of IEEE 400.2 standard, proving its feasibility and effectiveness.
机译:电力电缆在电网中发挥着重要作用,其中XLPE电缆广泛使用。同时,电缆的绝缘失效已成为严重的安全危险。 AC耐电压测试是一种有效的方法,可以在投入运行之前评估电力电缆的整体绝缘水平。近年来,极低的频率(VLF)测试设备在近年来用于交流电压测试,由于其便携性而受到流行。本文介绍了一种新型的VLF正弦波形发生器,可以在0.1Hz处产生正弦波形。与其他传统的VLF发生器相比,建议的设计效益在简单的结构和新颖控制中。该设备由一个双极充电电路,放电电路,极性转换开关,一个电阻分压器和控制系统,以及密钥的生成VLF正弦波形是滞后控制技术。本文使用Simulink软件构建了VLF发生器的仿真模型,验证了系统拓扑和控制策略的可行性。仿真结果表明,VLF发生器的这种设计可以在0.1Hz处产生正弦波形,其总谐波失真(THD)值小于5%。与此同时,本文研究了一些电路参数对输出波形的影响,以通过Simulink软件获得其最佳值。最后,在实验室内建立了实验平台以验证模拟结果,实验结果表明,该VLF发生器可以在0.1Hz处产生正弦波形,其THD值可以满足IEEE 400.2标准的要求,证明其可行性和有效性。

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