首页> 外文期刊>IEEE Transactions on Power Electronics >Analysis and Optimization of Variable-Frequency Soft-Switching Peak Current Mode Control Techniques for Microinverters
【24h】

Analysis and Optimization of Variable-Frequency Soft-Switching Peak Current Mode Control Techniques for Microinverters

机译:微逆变器变频软开关峰值电流模式控制技术的分析与优化

获取原文
获取原文并翻译 | 示例
       

摘要

This paper presents a detailed power loss model for a microinverter with three different zero voltage switching boundary conduction mode (BCM) current modulation methods. The model is used to calculate the optimum peak current boundaries for each modulation method. Based on the power loss model, a dual-zone modulation method is proposed to further improve the microinverter efficiency. The proposed modulation method provides two main benefits: the addition of one more soft switching transition and low inductor peak current. The additional soft switching transition reduces switching losses by means of zero current switching. The lower peak current boundary reduces inductor rms current and conduction losses as well as allowing the output filter inductor to be smaller and more efficient. An improved BCM peak current control method was proposed and implemented on a microinverter prototype. The control circuit provides a highly accurate representation of the filter inductor current waveform and also provides galvanic isolation that simplifies control circuit design. The experimental results on a 400-W three-phase half-bridge microinverter validate the theoretical analysis of the power loss distribution and demonstrate that further improvement in efficiency can be achieved by using the proposed dual-zone modulation method.
机译:本文介绍了一种具有三种不同的零电压开关边界传导模式(BCM)电流调制方法的微逆变器的详细功率损耗模型。该模型用于计算每种调制方法的最佳峰值电流边界。基于功率损耗模型,提出了一种双区调制方法,以进一步提高微逆变器的效率。所提出的调制方法具有两个主要优点:增加了一个软开关过渡和较低的电感峰值电流。附加的软开关过渡通过零电流开关降低了开关损耗。较低的峰值电流边界降低了电感的均方根电流和传导损耗,并使输出滤波电感器更小,更有效。提出了一种改进的BCM峰值电流控制方法,并在微逆变器原型上实现。控制电路提供了滤波器电感器电流波形的高精度表示,还提供了电流隔离,从而简化了控制电路设计。在400W三相半桥微逆变器上的实验结果验证了功率损耗分布的理论分析,并证明了通过使用建议的双区调制方法可以进一步提高效率。

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