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Design of Distribution Devices for Smart Grid Based on Magnetically Tunable Nanocomposite

机译:基于磁性可调谐纳米复合材料的智能电网配电装置设计

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摘要

This paper designs three distribution devices for the smart grid, which are, respectively, novel transformer with dc bias restraining ability, energy-saving contactor, and controllable reactor with adjustable intrinsic magnetic state based on the magnetically tunable nanocomposite material core. First, the magnetic performance of this magnetic material was analyzed and the magnetic properties processing method was put forward. One kind of nanocomposite which is close to the semihard magnetic state with low coercivity and high remanence was attained. Nanocomposite with four magnetic properties was processed and prepared using the distribution devices design. Second, in order to adjust the magnetic state better, the magnetization and demagnetization control circuit based on the single-phase supply power of rectification and inverter for the nanocomposite magnetic performance adjustment has been designed, which can mutual transform the material's soft and hard magnetic phases. Finally, based on the nanocomposite and the control circuit, a novel power transformer, an energy-saving contactor, and a magnetically controllable reactor were manufactured for the smart grid. The maintained remanence of the nanocomposite core after the magnetization could neutralize the dc bias magnetic flux in the transformer main core without changing the transformer neutral point connection mode, could pull in the contactor movable core instead of the traditional electromagnetic-type fixed core, and could adjust the reactor core saturation degree instead of the traditional electromagnetic coil. The simulation and experimental results verify the correctness of the design, which provides reliable, intelligent, interactive, and energy-saving power equipment for the smart power grids safe operation.
机译:本文设计了三种用于智能电网的配电装置,分别是具有直流偏置抑制能力的新型变压器,节能型接触器和基于可磁调谐纳米复合材料芯的具有可调固有磁态的可控电抗器。首先,分析了这种磁性材料的磁性能,并提出了磁性能处理方法。获得了一种接近半硬磁态,矫顽力低,剩磁高的纳米复合材料。使用分配装置设计对具有四种磁性的纳米复合材料进行了处理和制备。其次,为了更好地调节磁态,设计了基于整流和逆变器单相供电的磁化和退磁控制电路,用于纳米复合磁性能的调节,可以相互转换材料的软磁相和硬磁相。 。最后,基于纳米复合材料和控制电路,为智能电网生产了新型电力变压器,节能接触器和可磁控电抗器。磁化后纳米复合材料芯保持的剩磁可以在不改变变压器中性点连接方式的情况下中和变压器主芯中的直流偏置磁通,可以拉入接触器可动芯,而不是传统的电磁式固定芯,并且可以调整电抗器铁心的饱和度,代替传统的电磁线圈。仿真和实验结果验证了设计的正确性,为智能电网的安全运行提供了可靠,智能,交互式,节能的电力设备。

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