Novel Fault Analysis and Compensation in 5-Level Multilevel DC-AC Converter

Parimalasundar Ezhi̇lvannan, S. Krishnan
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引用次数: 1

Abstract

Existing Neutral clamped active (NCA) inverter has the property of common mode voltage with high frequency which can reduce the severity with less voltage gain. A newly designed 5L NCA inverter can capable have achieved voltage step-up with a one stage inversion process. Proposed circuit common ground increases voltage utilization in DC link and also mitigates common mode voltage with high frequency. Proposed topology has advantage of more compact and less voltage stress over existing two stage topology. Proposed circuit has only seven power switches with two capacitors, whereas existing topology is designed with 10 switches with 3 capacitors, so arrangement can obtain more efficiency. Implementation of this proposed topology is initially design in simulink platform, and the simulation results are finally verified in a proto-type model with power rating of 2000 W to validate its feasibility and performances with its fault clearance ability.
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新型5电平多电平DC-AC变换器故障分析与补偿
现有的中性点箝位有源(NCA)逆变器具有高频共模电压特性,可以以较小的电压增益降低严重程度。新设计的5L NCA逆变器可以通过一级逆变实现电压升压。所提出的电路共地提高了直流链路的电压利用率,并降低了高频共模电压。与现有的两级拓扑结构相比,该拓扑结构更紧凑,电压应力更小。所提出的电路只有7个2电容的电源开关,而现有的拓扑设计有10个3电容的开关,因此排列可以获得更高的效率。在simulink平台上初步设计了该拓扑的实现,最后在额定功率为2000 W的原型模型上对仿真结果进行了验证,以验证其可行性和故障清除能力。
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