首页> 外文会议>European Conference on Power Electronics and Applications >Hybrid Multiple Chopper Cells of PWM and Square-wave Operation for Solid-state Transformer
【24h】

Hybrid Multiple Chopper Cells of PWM and Square-wave Operation for Solid-state Transformer

机译:固态变压器的PWM和方波混合混合斩波器

获取原文

摘要

This paper proposes a modulation method combining PWM and square-wave drive for solid-state transformers (SSTs). Modular multilevel configurations based on input series and output parallel (ISOP) have been widely used. The advantage of ISOP configuration is that low on-resister and low-switching-loss devices are available because the applied voltage on each cell is divided by the number of cells. For this reason, SST based on the ISOP configuration is widely used in a medium-voltage system. However, this configuration has a problem that a high number of medium frequency devices, such as SiC-MOSFET, increases the cost of SST. In order to solve above problem, a reduction method of medium frequency devices are proposed. In the proposed method, one cell is driven with the PWM operation in order to compensate for the harmonic component. The other cells are driven by square-wave operation. Thus, the power factor correction (PFC) is held by different switching frequencies in each cell converter operated. Owing to the proposed operation, the medium frequency driving devices can be replaced with low-frequency devices, such as Si-IGBT, for cost-saving. As the drawback of the proposed control, the conduction time is unbalanced in the square wave cells. Thus, this paper also proposes the sorting operation to balance the output power of cells operated with square-wave drive. From the experimental results, THD of the input current is 2.91 %, the input power factor is 0.99, the maximum efficiency is 94.2% at 0.3p.u.(1.p.u.=1.0 k W).
机译:本文提出了一种将PWM和方波驱动相结合的固态变压器(SST)的调制方法。基于输入串联和输出并联(ISOP)的模块化多级配置已被广泛使用。 ISOP配置的优点是可以使用低导通电阻和低开关损耗的器件,因为每个单元上施加的电压除以单元数即可。因此,基于ISOP配置的SST被广泛用于中压系统中。然而,这种配置的问题在于,诸如SiC-MOSFET的大量中频器件增加了SST的成本。为了解决上述问题,提出了一种减少中频设备的方法。在所提出的方法中,以PWM操作驱动一个单元,以补偿谐波分量。其他单元由方波操作驱动。因此,在每个操作的单元转换器中,功率因数校正(PFC)由不同的开关频率保持。由于提议的操作,中频驱动装置可以用诸如Si-IGBT的低频装置代替,以节省成本。作为所提出的控制的缺点,在方波单元中传导时间是不平衡的。因此,本文还提出了分选操作,以平衡使用方波驱动的电池的输出功率。根据实验结果,在0.3p.u.(1.p.u. = 1.0 k W)时,输入电流的THD为2.91%,输入功率因数为0.99,最大效率为94.2%。

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