...
首页> 外文期刊>Power Electronics, IET >Analysis and design of split-capacitor resistiveinductive passive damping for LCL filters in grid-connected inverters
【24h】

Analysis and design of split-capacitor resistiveinductive passive damping for LCL filters in grid-connected inverters

机译:并网逆变器中LCL滤波器的分体电容电阻电感式无源阻尼分析与设计

获取原文
获取原文并翻译 | 示例
           

摘要

Grid-connected inverters require a third-order LCL filter to meet standards such as the IEEE Std. 519-1992 while being compact and cost-effective. LCL filter introduces resonance, which needs to be damped through active or passive methods. Passive damping schemes have less control complexity and are more reliable. This study explores the split-capacitor resistive-inductive (SC-RL) passive damping scheme. The SC-RL damped LCL filter is modelled using state space approach. Using this model, the power loss and damping are analysed. Based on the analysis, the SC-RL scheme is shown to have lower losses than other simpler passive damping methods. This makes the SC-RL scheme suitable for high power applications. A method for component selection that minimises the power loss in the damping resistors while keeping the system well damped is proposed. The design selection takes into account the influence of switching frequency, resonance frequency and the choice of inductance and capacitance values of the filter on the damping component selection. The use of normalised parameters makes it suitable for a wide range of design applications. Analytical results show the losses and quality factor to be in the range of 0.05-0.1% and 2.0-2.5, respectively, which are validated experimentally.
机译:并网逆变器需要三阶LCL滤波器才能满足IEEE Std等标准。 519-1992,但结构紧凑且具有成本效益。 LCL滤波器会引入谐振,需要通过主动或被动方法来抑制该谐振。被动阻尼方案具有较小的控制复杂度,并且更可靠。这项研究探索了分裂电容器电阻电感式(SC-RL)无源阻尼方案。使用状态空间方法对SC-RL阻尼LCL滤波器建模。使用该模型,可以分析功率损耗和阻尼。根据分析,与其他更简单的被动阻尼方法相比,SC-RL方案的损耗更低。这使得SC-RL方案适用于高功率应用。提出了一种在保持系统良好阻尼的同时使阻尼电阻的功率损耗最小的组件选择方法。设计选择考虑了开关频率,谐振频率以及滤波器电感和电容值的选择对阻尼分量选择的影响。归一化参数的使用使其适合广泛的设计应用。分析结果表明,损耗和品质因数分别在0.05-0.1%和2.0-2.5的范围内,这已通过实验验证。

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