非正弦电压源上磁通会变化的电-互感器性能测试

None Slamet Nurhadi, None Anang Dasa Nofvowan, None Ika Noer Syamsiana, None Yanik Lailinas Sakinah, None Masramdhani Saputra, None Mochammad Nur Rochman
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引用次数: 0

摘要

在工业领域,变压器被用作升压电压和降压电平。在负载变压器中,从变压器输出的功率(变压器输出功率)并不总是100%,因为在输送到负载时存在损耗。铜线中电流流动造成的损耗,铁芯中交流磁通造成的损耗,铁芯中涡流造成的损耗,导致变压器向负载输出的功率(输出功率)与向变压器输入的功率(输入功率)不相同。这就是变压器的效率。针对这些问题,提出的解决方案是设计并实现一个使用ei型铁芯交替排列的变压器,旨在通过应用于逆变器来防止发生在共固体中发生的涡流。从变压器的试验结果可以看出,负载时变压器内磁通密度的差异会影响效率。变压器的磁通密度越小,效率越好,而变压器的磁通密度越大,效率越低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Uji Performa Trafo E-I dengan Variasi Rapat Fluks pada Sumber Tegangan Non-Sinusoidal
In the industrial field, transformers are used as a step-up voltage and are used as a step-down level. In a loaded transformer, the power that comes out of the transformer (transformer output power) is not always 100% because there are losses when channeling to the load. Both losses caused by current flowing in the copper wire, losses caused by alternating flux in the iron core, and losses caused by Eddy current in the iron core which result in the outgoing power (output power) from the transformer to the load is not the same as the incoming power (input power) to the transformer. This is known as the efficiency of the transformer. From these problems, the solution offered is to design and implement a transformer using an EI-shaped iron core which is arranged alternately which aims to prevent the occurrence of Eddy Current what happens in the coresolid by applying to the inverter. From the test results of the transformer, it can be concluded that the difference in flux density in the transformer when it is loaded will affect efficiency. The smaller the flux density of the transformer, the better the efficiency, while the greater the flux density of the transformer, the lower the efficiency.
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