首页> 外文期刊>Applied Energy >Design and development of a multi-winding high-frequency magnetic link for grid integration of residential renewable energy systems
【24h】

Design and development of a multi-winding high-frequency magnetic link for grid integration of residential renewable energy systems

机译:用于住宅可再生能源系统网格集成多绕组高频磁力链路的设计与开发

获取原文
获取原文并翻译 | 示例

摘要

Recent advances in magnetic material characteristics and solid-state semiconductors have provided the feasibility of replacing the electrical buses with the high-frequency multi-winding magnetic links in small-scale renewable energy systems. This effectively reduces the number of conversion stages and improves the system's efficiency, cost, and size. Other advantages are galvanic isolation between the ports, bidirectional power flow capability and flexibility in energy management and control. Despite the advantages, design and development of the multi-winding magnetic links is relatively complex and based on computationally expensive numerical methods. Furthermore, the non-sinusoidal nature of voltage and currents, high-frequency parasitic effects and nonlinearity of magnetic material characteristics increase the design complexity. In this paper, the reluctance network modeling as a fast analytical method is used to design a three winding magnetic link. The core and copper losses of the designed component are evaluated taking into account duty ratio, amplitude and phase shift of the non-sinusoidal excitation voltage and currents. The thermal analysis is carried out using an accurate thermal-electric model. A prototype of the magnetic link was developed for application in a residential renewable energy system using amorphous magnetic materials. A set of experimental tests are conducted to measure the electrical parameters, magnetic characteristics, core loss, copper loss and temperature rise of the designed component and the results are compared to the specifications to validate the design procedure.
机译:磁性材料特性和固态半导体的最近进步已经提供了用小型可再生能源系统中的高频多绕组磁性连接更换电动总线的可行性。这有效地减少了转换阶段的数量,提高了系统的效率,成本和尺寸。其他优点是端口,双向动力流动能力与能源管理和控制中的灵活性之间的电流隔离。尽管有优点,多绕组磁性链路的设计和开发是相对复杂的并且基于计算昂贵的数值方法。此外,电压和电流的非正弦性质,高频寄生效应和磁性材料特性的非线性增加了设计复杂性。在本文中,使用作为快速分析方法的磁阻网络建模用于设计三个绕组磁链。考虑非正弦激励电压和电流的占空比,评估设计部件的核心和铜损失。使用精确的热电模型进行热分析。开发了磁链的原型,用于使用非晶磁性材料在住宅可再生能源系统中应用。进行一组实验测试以测量设计部件的电气参数,磁特性,磁芯损耗,铜损和温度升高,并将结果与​​规格进行比较,以验证设计程序。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号