减少器件数的多电平逆变器接口光伏系统的浪涌电流最小化

Priyanka Sen, V. Jha, A. K. Sahoo
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引用次数: 2

摘要

基于开关电容(SC)的多电平逆变器(mli)在各种直流-交流电源转换应用中发展迅速。这是由于不需要任何复杂的控制电路的电压平衡能力和升压能力。即使SC拓扑具有这些主要优点,这些电路中的一个关键问题是电容器突然充放电时的高涌流。本研究提出了一种新的SCMLI电路,由较少数量的开关和单个电源组成,解决了这个问题。所提出的电路的优点,如电容器电压平衡不增加闭环控制,电压升压和单源要求,促使作者在光伏(PV)应用中采用相同的电路。所提出的SCMLI通过直流升压变换器与光伏系统接口。dc-dc升压转换器允许电压升压,增加了SC网络的升压能力,并有助于减少由于电感的存在而产生的涌流。通过与现有配置的详细比较以及与光伏系统集成的电路的广泛仿真研究,验证了所提出结构的优点。
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Inrush Current Minimization in Reduced Device Count Multilevel Inverter Interfacing PV System
Switched capacitor (SC) based multilevel inverters (MLIs) are evolving rapidly for varieties of dc-ac power conversion applications. This is due to the voltage balancing ability without any complicated control circuit and voltage boosting ability. Even with these major advantages of SC topologies, a key issue in these circuits is the high inrush current while sudden charging and discharging of capacitors. This issue has been addressed in this work by proposing a new SCMLI circuit consisting lower number of switches and a single source. The merits of the proposed circuit such as voltage balancing of capacitors without adding closed loop control, voltage boosting and single source requirements has motivated the authors to employ the same circuit in photovoltaic (PV) application. The proposed SCMLI is interfaced with the PV systems through dc-dc boost converter. The dc-dc boost converter allows voltage boosting additional to the boosting capability of SC network and assist in minimizing the inrush current due to presence of inductor. The advantages of the proposed structure are verified by a detailed comparison with existing configurations and extensive simulation study of the proposed circuit in integration with the PV system.
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