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Parallel Operation of Triple- and Double-Wound Transformers with Difference Transformation Ratios

机译:具有差变比的三绕组和双绕组变压器并联运行

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AbstractDuring the operation of electric-power systems, there is often a problem of splitting up the capacity of transformers installed on substations, which, as a rule, entails mounting two or more transformers in parallel instead of a single one, the total capacity of which is the same. In such replacement, there is a problem of uniform distribution of the load between transformers. When using transformers that have the same capacity and are structurally similar, uniformity of load distribution is reached achieved owing to symmetry of parallel circuits. However, if transformers with of different designs and various transformation ratios are connected, then uniformity of a capacity distribution between transformers is violated. With an increase in the total load current, in the case of double-wound transformerIand triple-wound transformerIIconnected in parallel, the secondary current of transformerIincreases, as does its primary current, while the primary and secondary currents of transformerIIdecrease. In addition, the total current from the mains is less than the current of the primary winding of transformerI. With an increase in the loading current, the secondary current of transformerIincreases and the secondary current of transformerIIdecreases. At the highest value of the secondary current of transformerII, the vector of primary current of this transformer advances the voltage vector by more than by 90°. In addition, the secondary winding of transformerIIconsumes active power from transformerIand returns it to its primary winding.
机译: Abstract 在电力系统运行期间,经常会出现变电站安装的变压器容量分配问题。通常,需要并行安装两个或更多的变压器,而不是一个总容量相同的单个变压器。在这种替换中,存在变压器之间的负载均匀分布的问题。当使用容量相同且结构相似的变压器时,由于并联电路的对称性,可以实现负载分配的均匀性。然而,如果连接具有不同设计和不同变比的变压器,则将破坏变压器之间的容量分布的均匀性。随着总负载电流的增加,在双绕组变压器 I 和三绕组变压器 II 的情况下,并联时,变压器 I 的次级电流和初级电流一样增加,而变压器 II 的初级和次级电流减小。另外,来自市电的总电流小于变压器 I 的一次绕组的电流。随着负载电流的增加,变压器 I 的次级电流增加,而变压器 II 的次级电流减小。在变压器次级电流的最高值 II 时,该变压器的初级电流矢量使电压矢量前进90°以上。此外,变压器 II 的次级绕组消耗变压器 I 的有功功率,并将其返回到其初级绕组。

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