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A novel soft switching ZVS, sinusoidal input boundary current mode control of 6-switch three phase 2-level boost rectifier for active and active + reactive power generation

机译:一种新型软切换ZVS,正弦输入边界电流模式控制6开关三相2级升压整流器,用于主动和有源+无功发电

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Recent advancements in semiconductor technology and the commercial availability of low on resistance and parasitic capacitors wide bandgap devices (SiC & GaN) has led power electronics systems to achieve efficiency as high as 99% for three phase boost PFC rectifier systems. However, this high efficiency is attainable only for rectifiers running at low switching frequencies (<;70 kHz) as these converters operate in hard switching continuous conduction mode (CCM). Turn-on losses become dominant for high switching frequency operation with CCM. The trend for increasing switching frequency is driven by the fact that high switching frequency operation leads to significant reduction in filter size but high switching frequency operation is only feasible with soft switching ZVS turn-on control. Critical conduction mode (CRM) with ZVS turn-on has considerably high efficiency for single phase boost PFC at very high switching frequencies (>1 MHz). However, conventional boundary conduction mode (BCM)/CRM for three phase rectifier systems, does not generate sinusoidal average input current. A Zero Voltage Switching (ZVS) BCM control with sinusoidal input current for three phase 2-level converter is presented in this paper. This paper covers unity power factor (u.p.f.) operation, active + reactive power and also purely reactive power generation cases. The control scheme is presented in detail and ZVS turn-on operation is also discussed. The simulation and experimental results are discussed in the end. For a 1.2 KW converter, power density achieved by >500 kHz switching frequency operation is ~80 W/in3and with soft switching, 99 % efficiency is maintained.
机译:半导体技术的最新进展和低电阻和寄生电容的商业可用性宽带隙装置(SiC&GaN)具有LED电力电子系统,以实现三相升压PFC整流器系统高达99 %的效率。然而,只有在低开关频率(<; 70 kHz)下运行的整流器可实现这种高效率,因为这些转换器以硬切换连续导通模式(CCM)运行。用于CCM的高开关频率操作,开启损耗成为主导。增加开关频率的趋势是通过高开关频率操作导致过滤器尺寸的显着降低,但高开关频率操作仅具有可行的软切换ZVS导通控制。 ZVS开启的临界传导模式(CRM)对于单相升压PFC在非常高的开关频率(> 1MHz)上具有显着高的效率。然而,三个相整流系统的传统边界导电模式(BCM)/ CRM不会产生正弦平均输入电流。本文提出了具有三相2级转换器的正弦输入电流的零电压开关(ZVS)BCM控制。本文涵盖了统一功率因数(U.P.F.)操作,有源+无功功率以及纯无功发电案例。控制方案详细介绍,还讨论了ZVS开启操作。最后讨论了模拟和实验结果。对于1.2 kW转换器,通过> 500 kHz开关频率操作实现的功率密度为〜80 w / in 3 并且具有软切换,维护99 %效率。

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