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A Novel Dual-Input Switched-Capacitor Based 27-Level Boost Inverter Topology

机译:一种基于双输入开关电容的新型27级升压逆变器拓扑

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A single-phase step-up switched-capacitor based 27-level inverter topology is proposed that is capable of supplying resistive-inductive (R-L) loads. The suggested structure produces 27 voltage steps and gain of 1.3 with 2 DC supplies, 13 unidirectional switches, 13 driver boards, 2 capacitors, and 1 diode. The voltage balancing of capacitors takes place naturally, which eases the control of converter. The low voltage ripple on capacitors leads to low Total Harmonic Distortion (THD=1.9%) and better power quality, which reduces the size of end-side filter. The reduced elements, low Normalized Standing Voltage (NSV) and low Total Standing Voltage (TSV) on semiconductors are the other advantages. The application of 2 full-bridges imposes less Peak Inverse Voltage (PIV) on output-side switches. Also, the employment of fundamental frequency (nearest level) method for switching pulse generation reduces the switching losses. The comparison and simulation outcome highlight the benefits and correct operation of suggested inverter.
机译:提出了一种基于单相升压开关电容器的27级逆变器拓扑,该拓扑能够提供电阻性(R-L)负载。所建议的结构通过2个直流电源,13个单向开关,13个驱动器板,2个电容器和1个二极管产生27个电压阶跃和1.3的增益。电容器的电压平衡自然发生,从而简化了转换器的控制。电容器上的低电压纹波导致较低的总谐波失真(THD = 1.9 )和更好的电源质量,从而减小了端侧滤波器的尺寸。减少的元素,半导体上的低归一化站立电压(NSV)和低总站立电压(TSV)是其他优势。 2个全桥的应用在输出侧开关上施加了更少的峰值反向电压(PIV)。同样,采用基频(最接近电平)方法来产生开关脉冲也减少了开关损耗。比较和仿真结果突出了建议的逆变器的好处和正确的操作。

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