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A Novel Asymmetric Multilevel Inverter with Phase Disposed Switching Technique for Grid Integration of Solar Photovoltaic Systems

机译:新型相变开关非对称多相逆变器用于太阳能光伏系统并网

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Multilevel inverter suffers from low power conversion efficiency because of the large number of switching devices. Asymmetric multilevel inverter having the properties of a lower number of devices for generating the same output as multilevel inverter with lower total harmonic distortions (THDs) greatly contributes to the solution of low power conversion efficiency of the multilevel inverter. This paper not only proposes a novel asymmetric multilevel inverter but also illustrates the phase disposed switching technique for controlling the inverter. The main feature of the proposed topology is that it uses 86% switching devices for generating single phase seven-level output, which saves 87% switching devices compared to traditional cascaded H-bridge inverter. This proposed topology is comparable with the existing asymmetric topologies on the basis of THDs, cost, weight, and power losses. From the analysis, it is seen that, the proposed topology saves 23.57% of device cost and 23.89% of system weight as compared with that of the existing topologies. Again, THD decreases around 2.43% as evaluate to asymmetric-l and around 4.37% as contrast to asymmetric-2. The proposed inverter topology and switching technique are validated in MATLAB/Simulink environment.
机译:由于开关装置的数量众多,多电平逆变器的功率转换效率低。具有用于产生与具有较低总谐波失真(THD)的多电平逆变器的输出相同数量的设备的较少数量的设备的特性的非对称多电平逆变器极大地有助于解决该多电平逆变器的低功率转换效率。本文不仅提出了一种新颖的非对称多电平逆变器,而且还阐述了用于控制逆变器的相位配置开关技术。提出的拓扑的主要特征是,它使用86%的开关设备生成单相七电平输出,与传统的级联H桥逆变器相比,节省了87%的开关设备。基于THD,成本,重量和功率损耗,该提议的拓扑可与现有的非对称拓扑相媲美。从分析中可以看出,与现有拓扑相比,拟议的拓扑节省了23.57%的设备成本和23.89%的系统重量。同样,根据不对称-1的评估,THD降低约2.43%,与不对称2的评估相比,降低约4.37%。所提出的逆变器拓扑和开关技术已在MATLAB / Simulink环境中得到了验证。

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