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Modular-structured resonant converter for multilevel converters in micro grids

机译:用于微电网中多电平转换器的模块化结构谐振转换器

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In this work, an isolated modular resonant circuit with effective voltage regulation is presented as front-end for multilevel inverter system to interface renewable sources of energy with micro grid. Inputs of each module of the converter are connected to low-voltage DC sources. Modular-structured module outputs may be linked in sequence or parallel to attain the desired DC link capacitor voltage for multilevel inverter. The proposed converter overcomes imbalance in the capacitor voltage of diode-clamped inverter structure. Interleaved phase shift of 90 degrees is supplied among the gate pulses of all four modules that minimizes the input-side current ripples. An effective zero voltage switching (ZVS) is achieved over wide load range using duty cycle and frequency-duty cycle double control method to improve system performance at light load condition. Adopting powder core magnetics and low forward voltage insulated-gate bipolar transistors (IGBTs) reduces magnetic and conduction loss. A 12-kW prototype of the designed modular resonant converter was verified by experimentation with a different-level diode-clamped inverter structures.
机译:在这项工作中,提出了一种具有有效电压调节功能的隔离式模块化谐振电路,作为多电平逆变器系统的前端,以将可再生能源与微电网连接。转换器每个模块的输入都连接到低压直流电源。模块化结构的模块输出可以顺序或并联连接,以实现多电平逆变器所需的直流母线电容器电压。所提出的转换器克服了二极管钳位的逆变器结构的电容器电压中的不平衡。在所有四个模块的栅极脉冲之间提供90度的交错相移,可最大程度地减少输入侧电流纹波。使用占空比和频率占空比双重控制方法可在宽负载范围内实现有效的零电压开关(ZVS),以改善轻负载条件下的系统性能。采用压粉磁芯磁体和低正向电压绝缘栅双极晶体管(IGBT)可减少磁损耗和传导损耗。通过使用不同级别的二极管钳位逆变器结构进行实验,验证了设计的模块化谐振转换器的12kW原型。

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