首页> 外文会议>2014 Power and Energy Systems Conference: Towards Sustainable Energy >A cascaded asymmetric multilevel inverter with minimum number of switches for solar applications
【24h】

A cascaded asymmetric multilevel inverter with minimum number of switches for solar applications

机译:级联非对称多电平逆变器,用于太阳能应用的开关数量最少

获取原文
获取原文并翻译 | 示例

摘要

Solar energy is one of the renewable energy which is used to generate electricity with the help of PV arrays. DC-DC converter is used to step up the DC voltage from PV arrays and then it is connected to an inverter for AC applications. Conventional inverters have many issues like non sinusoidal output, high total harmonic distortion (THD), high switching stress and more number of switches. So multilevel inverter (MLI) have gained much importance over conventional inverters for high voltage and high power applications, due to the increased number of voltage levels producing less number of harmonics. In this paper, a cascaded asymmetric multilevel inverter is proposed which contains minimum number of switches and can be employed in AC applications using solar energy. The proposed topology consists of 25 output levels using 10 switches with near sinusoidal output, thereby reducing gate driver circuitry and optimizing circuit layout. Asymmetric multilevel inverter is more advantageous than symmetric multilevel inverter in obtaining more number of output levels using same number of voltage sources. The other advantages of proposed topology are low voltage stress and reduced THD. The THD for proposed inverter circuit is only 4.98%. Modeling and simulation is carried out using MATLAB/SIMULINK.
机译:太阳能是可再生能源之一,可用于借助光伏阵列发电。 DC-DC转换器用于提高PV阵列的DC电压,然后将其连接到用于AC应用的逆变器。常规逆变器存在许多问题,例如非正弦输出,高总谐波失真(THD),高开关应力和更多开关。因此,对于高电压和高功率应用,多电平逆变器(MLI)相对于常规逆变器已变得越来越重要,这是因为电压电平数量的增加产生了较少的谐波。本文提出了一种级联非对称多电平逆变器,该逆变器包含最少数量的开关,可用于使用太阳能的交流应用中。拟议的拓扑结构由使用10个具有接近正弦输出的开关的25个输出电平组成,从而减少了栅极驱动器电路并优化了电路布局。在使用相同数量的电压源获得更多数量的输出电平时,不对称多电平逆变器比对称多电平逆变器更具优势。提出的拓扑的其他优点是低电压应力和降低的总谐波失真。建议的逆变器电路的THD仅为4.98%。使用MATLAB / SIMULINK进行建模和仿真。

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