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Influence of capacitive no-load current component in large power transformers

机译:电容式无负载电流分量在大型电力变压器中的影响

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No load current of large power transformers consists of active and reactive component. Active component covers hysteresis and eddy current losses in the core. Reactive component (usually called magnetizing current) creates magnetic field / magnetic flux and lags the voltage by 90? In most models these two components are enough to describe no-load current in large power transformer at power grid frequency (50 or 60 Hz). Due to the low frequency modeling the winding capacitance are usually neglected. For higher frequencies and/or transients, ground capacitive reactances and capacitive reactances between winding turns and windings are significant and they need to be modeled and, therefore, capacitive current component occurs. If capacitances can be neglected, reactive component of no load current consists only of magnetizing part and depends only on magnetic steel properties, following its B-H curve. In this paper the presence of capacitive component of large power transformer no-load current is presented when powered by 50 Hz sinusoidal voltage. Capacitive component exist mainly as sum of the capacitive component of supplied windings and transferred currents from other windings, Its influence on the no-load characteristic and an approach for determination of the inductive component in the no-load current based on the no-load current measurement is explained. Equivalent capacitance is compared with capacitance measurements in test field.
机译:没有大功率变压器的负载电流由主动和反应性分量组成。有源组件涵盖核心中的滞后和涡流损耗。反应部件(通常称为磁化电流)产生磁场/磁通量并延迟电压90?在大多数型号中,这两个组件足以在电网频率(50或60 Hz)下大功率变压器中的无负载电流。由于低频模型,通常忽略绕组电容。对于更高的频率和/或瞬变,绕组转动和绕组之间的接地电容和电容式电容很大,因此需要进行建模,因此发生电容电流分量。如果可以忽略电容,则无负载电流的反应分量仅由磁化部分组成,并且仅取决于其B-H曲线之后的磁性钢属性。在本文中,当功耗为50Hz正弦电压时,呈现大功率变压器无负载电流的电容分量的存在。电容分量主要存在于供应绕组的电容分量和其他绕组的传送电流的总和,其对空载特性的影响以及基于空载电流的无负载电流中的电感分量的方法解释测量。将等效电容与测试字段中的电容测量进行比较。

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