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Two new impedance source network topologies for inverter applications

机译:用于逆变器应用的两个新的阻抗源网络拓扑

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摘要

In the last decade, the impedance source networks have been vastly used in electrical power conversion such as in electric vehicles, industrial machines, medical systems and avionics, with considerable efficiency improvements. In this study, two new impedance source network topologies for inverter applications have been designed and tested. The first one is a one-cell switched inductor (SL), the second is a two-cell switched inductor (X-SL) combined with the classical Z-source inverter (ZSI). This novel combination allows the switched inductor to store the unused source energy in the interval when the source separates from the ZSI network during the shoot-through zero state. The design is generalised by adding multiple branches of series inductors and diodes which further improve the circuit performance. The National Instrument Multisim programme is used for the simulations of the new topologies. Both of the proposed topologies, SL combined with classical ZSI (SL&ZSI) and X-SL combined with classical ZSI (X-SL&ZSI), are tested with specific inductance and capacitance values. Major improvements are observed in the boost factor and the elimination of the start-up inrush current for both topologies, compared to the classical ZSI scheme. Furthermore, in both topologies, a significant reduction in the capacitor stress levels is obtained.
机译:在过去的十年中,阻抗源网络已经广泛用于电力转换,例如电动车辆,工业机械,医疗系统和航空电子版,具有相当大的效率改进。在本研究中,设计并测试了两个用于变频器应用的新阻抗源网络拓扑。第一个是单电池开关电感器(S1),第二是与经典Z源逆变器(ZSI)组合的双单元开关电感器(X-SL)。当源在射击零状态期间从ZSI网络分离时,该新颖组合允许切换电感在间隔中存储未使用的源能量。通过添加多个串联电感器和二极管的分支来推广设计,这进一步提高了电路性能。国家仪器MultiSim程序用于新拓扑的模拟。两个提出的拓扑,SL与经典ZSI(SL&ZSI)和X-SL与经典ZSI(X-SL&ZSI)相结合,具有特定电感和电容值。与经典ZSI方案相比,在增强因子和消除两个拓扑的启动浪涌电流中,观察到主要改进。此外,在两个拓扑中,获得电容器应力水平的显着降低。

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