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Modeling Capacitive Low-Power Voltage Transformer Behavior over Temperature and Frequency

机译:在温度和频率上建模电容低功耗电压变压器行为

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摘要

The use of capacitive dividers (CDs) in medium-voltage (MV) networks started as simple voltage detectors and as rough voltage measurement instruments for protective purposes. Now, with the spread of intelligent electronic devices and renewable energy sources at the distribution level, capacitive dividers are designed and installed to perform accurate voltage measurements. Such a requirement is mandatory when the power quality has to be assessed. Therefore, CDs are currently being used either for power frequency or for high-frequency (supraharmonic- or partial-discharge-level) measurements. In this paper, typical off-the-shelf CDs are studied and modeled to understand how they behave in a wide range of frequencies and when the temperature varies. To this purpose, specific setups and tests have been developed and performed. From the results, it is clear that with proper modeling of CDs, it is possible to exploit them for measuring phenomena in a wide range of frequencies, including the effects due to temperature variations and self-resonances.
机译:在中压(MV)网络中使用电容分频器(CDS)开始作为简单的电压检测器和用于保护目的的粗压测量仪器。现在,随着智能电子设备的扩散和可再生能源在配电水平,设计和安装电容式分隔器以进行精确的电压测量。当必须评估电能质量时,这种要求是强制性的。因此,CD目前用于功率频率或高频(超级谐波或部分放电级)测量。在本文中,研究并建模典型的离上的CD,以了解它们在各种频率和温度变化时的行为。为此目的,已经开发并执行了特定的设置和测试。从结果中,很明显,通过适当的CD建模,可以利用它们来测量在各种频率中的现象,包括由于温度变化和自共振引起的效果。

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