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Full-Bridge Modular Multilevel Submodule-Based High-Voltage Bipolar Pulse Generator With Low-Voltage DC, Input for Pulsed Electric Field Applications

机译:基于全桥模块化多级子模块的高压双极性脉冲发生器,具有低压直流输入,用于脉冲电场应用

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High-voltage (HV) pulse generators (PGs) are the core of pulsed electric field applications. Applying HV pulses produces electrical pores in a biological cell membrane, in which if the size of the pores increases beyond a critical size, the cell will not survive. This paper proposes a new HV-PG based on the modular multilevel converter with full-bridge submodules (FB-SMs). In order to alleviate the need of complicated sensorless or sensor-based voltage balancing techniques for the FB-SM capacitors, a dedicated self-regulating charging circuit is connected across each FB-SM capacitor. The individual capacitor charging voltage level is obtained from three successive stages, namely, convert the low-voltage dc input voltage to a high-frequency square ac voltage, increase the ac voltage level via a nanocrystalline step-up transformer, and rectify the secondary transformer ac voltage via a diode FB rectifier. The HV bipolar pulses are formed across the load in a fourth stage through series connected FB-SMs. The flexibility of inserting and bypassing the FB-SM capacitors allows the proposed topology to generate different pulse-waveform shapes, including rectangular waveforms with specifically reduced and ramp pulses. The practical results, from a scaled-down experimental rig with five FB-SMs and a 1-kV peak-to-peak pulse output, validate the proposed topology.
机译:高压(HV)脉冲发生器(PG)是脉冲电场应用的核心。施加HV脉冲会在生物细胞膜上产生电孔,其中如果孔的大小增加到超过临界大小,细胞将无法生存。本文提出了一种基于带有全桥子模块(FB-SM)的模块化多电平转换器的新型HV-PG。为了减轻FB-SM电容器对复杂的无传感器或基于传感器的电压平衡技术的需求,在每个FB-SM电容器之间连接了专用的自调节充电电路。单个电容器的充电电压电平是从三个连续的阶段获得的,即将低压直流输入电压转换为高频方交流电压,通过纳米晶升压变压器提高交流电压电平,并对次级变压器进行整流通过二极管FB整流器获得交流电压。 HV双极性脉冲通过串联的FB-SM在第四级中跨负载形成。插入和旁路FB-SM电容器的灵活性允许所提出的拓扑生成不同的脉冲波形形状,包括具有特定减小的脉冲波形和斜坡脉冲的矩形波形。实际结果来自具有五个FB-SM和1kV峰峰值脉冲输出的按比例缩小的试验台,验证了所提出的拓扑。

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