• Title/Summary/Keyword: Winding method of transformer

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Electromagnetic Force Calculation of Internet Winding Fault in A Distribution Power Transformer by using A Numerical Program (수치해석을 이용한 배전용 변압기 권선 고장시의 전자력 계산방법 연구)

  • Shin, Pan-Seok;Ha, Jung-Woo;Chung, Hee-Jun
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.21 no.5
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    • pp.60-67
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    • 2007
  • In this paper, a simulation method of the internal winding fault is proposed to calculate winding current and electromagnetic force in a distribution power transformer by suing FEM program. The model of the transformer is a single phase, 60[Hz], 1[MVA], 22.9[kV]/220[V], cable-type winding. The short-circuit current and electromagnetic force are calculated by FEM(Finite Element Method) program(Flux2D) and the results we verified with theoretical formula and PSPICE program. The simulation results are fairly good agreement with the other verified methods within 5[%] error rate. The turn-to-turn short-circuit current is 500 times of the rated current and the electromagnetic force is about $20{\sim}200times$. The method presented in this study may serve as one of the useful tools in the electromagnetic force analysis of the transformer winding behavior under the short circuit condition for design of the structure.

Continuous Disk Winding for High Voltage Superconducting Transformer (초고압 초전도 변압기용 연속 디스크 권선)

  • Hwang, Y.I.;Kim, W.S.;Lee, S.;Chang, T.;Hahn, J.H.;Joo, H.G.;Choi, K.D.;Hahn, S.
    • Proceedings of the KIEE Conference
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    • 2005.07b
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    • pp.1234-1236
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    • 2005
  • High temperature superconducting(HTS) windings for an HTS transformer which have been developed have two kinds of type, one is the layer type and the other is disk type. The disk type windings have advantages over the layer type ones for a power transformer such as good insulation and limit of voltage stress. But this kind of HTS winding generates excessive AC losses caused by strong magnetic field component perpendicular to the surface of the HTS wire. Nevertheless, the layer type windings have adopted for an HTS power transformer so far because of the small AC losses of the HTS windings. We propose a new winding method for a high voltage HTS transformer which has advantages of both type of HTS windings, and we call it continuous disk type HTS winding. This new type of HTS winding consists of pile of lots of HTS disk windings which have no resistive joint between them. A prototype of an HTS winding was fabricated by the new winding method we proposed and characteristic test was carried out. The test result shows that the new type HTS windings can be applied to HTS power transformers, especially to the high voltage ones.

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A study on an optimal design of the high frequency transformer in LLC DC to DC resonant converter (LLC DC to DC 공진 컨버터의 고주파 변압기 최적화 설계에 관한 연구)

  • Jong-Hae Kim
    • Journal of IKEEE
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    • v.27 no.4
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    • pp.587-600
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    • 2023
  • This paper presents an optimal design of the slim type high frequency transformer used in the LLC DC to DC resonant converter for 65-inch UHD-TV with the rated power of 315W. This paper also performs an optimal design of the slim type high frequency through core loss analysis, AC winding loss analysis, and optimization design of the winding arrangement of the LLC resonant transformer. Particularly, the high-efficiency and slim type high frequency transformer based on the obtained results from theoretical analysis in this paper is constructed in the interleaved and vertical winding structures of its transformer to realize the winding method of automatic type and minimize AC winding loss. The primary and secondary windings of the slim type high frequency transformer the vertical winding structure proposed in this paper used the Litz-wire windings, PCB and copper plate windings, respectively. Finally, an optimal design of the slim type high frequency transformer proposed in this paper was carried out through the experimental results to confirm the validity of theoretical analysis based on the simulation results using Maxwell 2D and 3D tool.

Power Loss Characteristics according to Winding Method of High Frequency Transformer (고주파 트랜스포머의 권선기법 따른 손실특성)

  • Kim, Il-Nam;Yoon, Shin-Yong;Lee, Gong-Hee
    • Proceedings of the KIEE Conference
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    • 2004.07e
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    • pp.49-51
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    • 2004
  • This paper researched the power loss characteristics according to winding method of high frequency transformer. Power loss was analyzed by PExprt using FEM software. The ferrite core model for analysis be used the EE type. Transformer model objected type applied to flyback converter. Therefore, analysis result was obtained the many parameter of DC, AC resistance, leakage inductance, copper loss, core loss, and temperature etc.

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A Study on L.V.I. Diagnosis Field Application of Transformer Winding Deformation (변압기 권선변형 L.V.I. 진단 실적용을 위한 연구)

  • Cho, Kook-Hee;Kang, Dong-Sik;Kim, Kwang-Hwa;Kweon, Dong-Jin
    • Proceedings of the KIEE Conference
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    • 1998.07e
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    • pp.1638-1640
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    • 1998
  • We describe the possibility of field application and the diagnosis method of winding deformation in the power transformers using L.V.I. test system. Any winding deformation will result in a change of capacitance between winding parts and passibly some change in the winding inductance. These changes will then result in a change in the responce to the applied pulse in both the magnitude and period of the resulting oscillations. And we discuss with respect to test result of model transformer and commercial transformer, appear good results with application possibility in field.

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A Study on Application for Y-Tz Transformer Winding Method to Decrease the Current Unbalance on the Source Side (전원측 전류불평형 감소를 위한 변압기 Y-Tz 결선방식 적용에 관한 연구)

  • Lee, Jung-Eun;Song, Young-Joo;Choi, Hong-Kyoo;Kim, Tae-Hoon;Kim, In-Tae
    • The Transactions of The Korean Institute of Electrical Engineers
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    • v.63 no.9
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    • pp.1206-1211
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    • 2014
  • Most LV customers have been applying three-phase four-wire electric distribution system which supplies 1-phase and 3-phase load concurrently. Due to its structural simplicity, This system is easy to run. But it can also cause many problems from the unbalance, such as reduced output, increased loss etc. Also the unbalance in the load side causes the unbalance in the source side; it may lower the stability of the whole power system. In this paper, we propose the Y-Tz transformer winding method to reduce the current unbalance in the source side. Efficiency of this method was proven through the simulation and verification experiment.

The Relationship between Wind Power Generation Grid-connected Transformer Winding Connection and Fault Current in MATLAB & SIMULINK (MATLAB & SIMULINK에서 풍력발전 계통연계 변압기결선과 고장전류와의 관계)

  • An, Hae-Joon;Kim, Hyun-Goo;Jang, Gil-Soo
    • 한국신재생에너지학회:학술대회논문집
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    • 2008.10a
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    • pp.307-309
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    • 2008
  • This study suggests a modeling of grid-connected wind turbine generation system that has induction generator, and aims to perform simulations for outputs by the variation of actual wind speed and for fault current of wind generation system by the transformer winding connection. This study is implemented by matlab&simulink. The simulation shall be performed by assuming single line to ground fault generated in the system. Generator power, generator rotor speed, generator terminal current and fault current shall be observed following the performance of simulation. The fault current change will be dealt through the simulation results for fault current of wind generation system following the grid-connected transformer winding connection and the simulation result by the transformer neutral ground method.

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The Thermal Analysis of Pole Mount Mold Transformer with One-body Molding by Duct Condition (일체형 주상용 몰드 변압기의 덕트에 따른 열해석 특성 연구)

  • 조한구;이운용;박영두
    • Journal of the Korean Institute of Electrical and Electronic Material Engineers
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    • v.17 no.3
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    • pp.348-352
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    • 2004
  • The mold transformers have been widely used in underground substations in large building and have some advantages in comparison to oil-transformer, that is low fire risk, excellent environmental compatibility, compact size and high reliability. In addition, the application of mold transformer for outdoor is possible due to development of epoxy resin. The mold transformer generally has cooling duct between low voltage coil and high voltage coil. A mold transformer made by one body molding method has been developed for small size and ow loss, but it needs some cooling method because heat radiation between each winding is difficult. The life of transformer is significantly dependent on the thermal behavior in windings. Many transformer designers have calculated temperature distribution and hot spot point by finite element method(FEM) to analyze winding temperature rise. In this paper, The thermal analysis of pole mount mold transformer with one body molding by duct condition is investigated and the test result of temperature rise is compared with simulation data.

The Diagnosis cast-resin Transformer using Infrared Thermography system (열화상을 이용한 몰드변압기의 진단)

  • Jeong, Sung-Cheon;Chun, Jong-Chul;Lim, Yong-Bae
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2003.11a
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    • pp.216-219
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    • 2003
  • This paper presents the analyzing method for surface temperature distribution of a cast-resin transformer. For the study, the surface temperature of the transformer winding was measured and analyzed by a infrared thermography system. Alternating voltages were applied to simulate deterioration of the specimen transformer, and the hot-spot on the transformer surface was measured to analyze the condition for the winding. The hot line condition measured to the changes in surface temperature using infrared thermography camera and was set up the based of diagnostic method of the electric power apparatus. The results ould show the possibility of remote diagnosis using internet.

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Power Loss Calculation of High Frequency Transformers

  • Choi Geun-Soo;Yoon Shin-Yong;Baek Soo-Hyun;Kim Yong
    • Journal of Electrical Engineering and Technology
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    • v.1 no.3
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    • pp.338-342
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    • 2006
  • This paper analyzed the power loss of transformers considering the magnetic component. For this, each winding strategy and the effect of air gap between the ferrite core have been an important variable for optimal parameter calculation. Inductors are very well known design rules to devise, but the performance of the flyback converter as a function of transformer winding strategy has not been fully developed. The transformer analysis tool used was PExpert. The influence of the insulator thickness, effect of the air gap, how the window height and variation of the capacitive value effects the coil and insulator materials are some of parameters that have been analyzed in this work. The parameter analysis is calculated to a high frequency of 48[kHz]. Therefore, the final goal of this paper was to calculate and adjust the parameters according to the method of winding array and air gap minimizing the power loss.