首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >Optimization of Distributive Ratios of Apportioned Winding Configuration in HTS Power Transformers for Hysteresis Loss and Leakage Flux Reduction
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Optimization of Distributive Ratios of Apportioned Winding Configuration in HTS Power Transformers for Hysteresis Loss and Leakage Flux Reduction

机译:用于滞后损耗和漏磁通降低的HTS电力变压器分配绕组配置分配比的优化

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摘要

In recent years, using high-temperature superconductor (HTS) transformers in transportation and electrical power systems has attracted much interest. The major advantages of HTS transformers compared with conventional ones are much smaller size and volume and lighter weight in confined spaces of urban areas or transportation devices. One of the most critical parameters to design, fabricate, and commercialize HTS transformers is hysteresis loss in HTS tapes. Using numerical methods, the accurate value of hysteresis loss and efficiency can be calculated or estimated in HTS transformers. In this paper, two innovative techniques to reduce the leakage flux and thereby hysteresis loss in HTS transformers have been proposed. In the first technique, the concentric windings of HTS transformer are apportioned into a certain number of sub-windings. In the second one, with optimizing the distributive ratios of sub-windings, the windings become unsymmetrical. In order to demonstrate the effectiveness of proposed techniques, an accurate and advanced numerical method based on finite element analysis has been used to design four symmetrical and unsymmetrical primary (P)-secondary (S)-P-S-P and P-S-P-S-P-S-P winding schemes. The simulation results prove the effectiveness of both techniques in reducing the radial and axial leakage flux magnitudes and thereby hysteresis loss in HTS windings.
机译:近年来,在运输和电力系统中使用高温超导(HTS)变压器引起了人们的极大兴趣。与传统变压器相比,HTS变压器的主要优点是在狭窄的市区或运输设备中体积更小,体积更轻,重量更轻。设计,制造和商业化HTS变压器的最关键参数之一是HTS胶带的磁滞损耗。使用数值方法,可以在HTS变压器中计算或估算磁滞损耗和效率的准确值。在本文中,已提出了两种创新的技术来减少HTS变压器的漏磁通,从而减少磁滞损耗。在第一种技术中,将HTS变压器的同心绕组分配到一定数量的子绕组中。在第二种方法中,通过优化子绕组的分配比例,绕组变得不对称。为了证明所提出技术的有效性,基于有限元分析的精确高级数值方法已被用于设计四个对称和不对称的一次(P)-二次(S)-P-S-P和P-S-P-S-P-S-P绕组方案。仿真结果证明了这两种技术在减小径向和轴向漏磁通量以及由此降低HTS绕组磁滞损耗方面的有效性。

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