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首页> 外文期刊>IEEE Transactions on Industrial Electronics >A PWM Plus Phase-Shift Controlled Interleaved Isolated Boost Converter Based on Semiactive Quadrupler Rectifier for High Step-Up Applications
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A PWM Plus Phase-Shift Controlled Interleaved Isolated Boost Converter Based on Semiactive Quadrupler Rectifier for High Step-Up Applications

机译:基于半有源四倍整流器的PWM加相移控制交错式隔离式Boost转换器,用于高升压应用

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摘要

Semiactive quadrupler rectifiers (SAQRs) are proposed in this paper to serve as the secondary rectification circuits, which make the secondary-side voltages to be controllable and help reduce current stress and conduction losses. An interleaved isolated boost converter is developed based on the proposed SAQRs. By utilizing the pulse-width modulation (PWM) plus phase-shift (PPS) control strategy, the primary- and secondary-side voltages are well matched to reduce the current values and circulating conduction losses. With the proposed SAQRs, the voltage gain is extended and the voltage stresses on power devices and passive components used in rectification circuits are reduced to the half of the high output voltage. Hence, the efficiency is improved by using a transformer with a smaller turns ratio and reduced parasitic parameters, and by employing low-voltage rating devices with better switching and conduction performance. With optimal design, lower voltage, and current stresses on the primary-side switches, minimized input current ripple can be realized. Moreover, the zero-voltage turn on switching of the active switches and the zero-current turn off switching of the diodes can be achieved over a wide load and voltage range by the proposed SAQR-based converter and the control strategy. Meanwhile, the higher voltage gain, the lower voltage, and the current stresses on power devices can be obtained with the proposed SAQR-based converter compared with passive quadrupler rectifier-based converter. The feasibility and effectiveness of the proposed SAQRs and the derived converter are verified by a 380-V output prototype.
机译:本文提出了半有源四足整流器(SAQR)作为二次整流电路,使二次侧电压可控,并有助于降低电流应力和传导损耗。基于提出的SAQR,开发了交错式隔离式升压转换器。通过利用脉宽调制(PWM)和相移(PPS)控制策略,初级侧和次级侧电压可以很好地匹配,以减小电流值和循环传导损耗。利用所提出的SAQR,可以扩展电压增益,并将整流电路中使用的功率器件和无源元件上的电压应力减小到高输出电压的一半。因此,通过使用具有较小匝数比和减小的寄生参数的变压器,以及通过使用具有更好的开关和传导性能的低压额定值器件,可以提高效率。通过优化设计,降低初级侧开关的电压和电流应力,可以实现最小的输入电流纹波。此外,通过提出的基于SAQR的转换器和控制策略,可以在较宽的负载和电压范围内实现有源开关的零电压导通开关和二极管的零电流关断开关。同时,与基于无源四倍整流器的变换器相比,所提出的基于SAQR的变换器可以获得更高的电压增益,更低的电压以及对功率器件的电流应力。 380V输出原型验证了所提出的SAQR和派生的转换器的可行性和有效性。

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