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Time-Domain Approach to Estimate Series Capacitance of an Isolated Phase Winding of a Transformer

机译:时域法估算变压器隔离相绕组的串联电容

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摘要

Information available in frequency response data is equivalently available in the time domain as a response due to an impulse excitation. The idea to pursue this equivalence to estimate series capacitance is linked to the well-known fact that under impulse excitation, the lineeutral current in a transformer has three distinct components, of which, the initial capacitive component is the first to manifest, followed by the oscillatory and inductive components. Of these, the capacitive component is temporally well separated from the rest—a crucial feature permitting its direct access and analysis. Further, the winding initially behaves as a pure capacitive network, so the initial component must obviously originate from only the (series and shunt) capacitances. With this logic, it should therefore be possible to estimate series capacitance, just by measuring the initial capacitive component of line current and the total shunt capacitance. The principle of the method and details of its implementation on two actual isolated transformer windings (uniformly wound) are presented. For implementation, a low-voltage recurrent surge generator, a current probe, and a digital oscilloscope are all that is needed. The method is simple and requires no programming and needs least user intervention, thus paving the way for its widespread use.
机译:频率响应数据中可用的信息由于脉冲激励而在时域中作为响应等效可用。追求等效性以估算串联电容的想法与一个众所周知的事实有关,即在脉冲激励下,变压器中的线路/中性线电流具有三个不同的分量,其中,首先出现的是初始电容分量,其次是由振荡和电感组成。其中,电容性组件在时间上与其余组件分开得很好,这是一个允许对其直接访问和分析的关键特征。此外,绕组最初表现为纯电容网络,因此,初始分量显然必须仅来自(串联和并联)电容。因此,利用这种逻辑,仅通过测量线路电流的初始电容分量和总并联电容,就应该可以估计串联电容。介绍了该方法的原理及其在两个实际隔离的变压器绕组(均匀缠绕)上的实现细节。为了实现该方案,只需要一个低压循环浪涌发生器,一个电流探头和一个数字示波器。该方法简单并且不需要编程,并且需要最少的用户干预,从而为其广泛使用铺平了道路。

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