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Modeling and control of soft-switching mode rectifiers with power factor correction

机译:具有功率因数校正功能的软开关模式整流器的建模和控制

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摘要

The small-signal modeling and quantitative controller design of a soft-switching mode rectifier (SSMR) is presented in this paper. First, a single-phase boost-type SSMR is formed from the traditional boost-type switching mode rectifier (SMR) with auxiliary resonant branch to achieve zero-voltage-transition (ZVT) soft switching for the main and auxiliary switches. For the current-controlled pulse width modulation (PWM) scheme, the small signal model of the current control loop is obtained using a statespace averaging method and the parameters of the controller are found based on a frequency response approach. As for the voltage control loop design, the dynamic model of the proposed SSMR is first derived using averaging method for two-time-scale (AMTTS) and averaged power method. Then, a quantitative procedure is proposed to find the parameters of the voltage controller according to the prescribed control performance. The accuracy of the derived SSMR dynamic model and the effectiveness of the proposed controller are demonstrated by some simulation and experimental results.
机译:本文提出了一种软开关模式整流器(SSMR)的小信号建模和定量控制器设计。首先,由具有辅助谐振支路的传统升压型开关模式整流器(SMR)形成单相升压型SSMR,以实现主开关和辅助开关的零电压转换(ZVT)软开关。对于电流控制的脉冲宽度调制(PWM)方案,使用状态空间平均方法获得电流控制环路的小信号模型,并基于频率响应方法找到控制器的参数。对于电压控制回路的设计,首先采用两次平均法(AMTTS)和平均功率法推导了所提出的SSMR的动态模型。然后,提出了一种定量程序,以根据规定的控制性能来找到电压控制器的参数。仿真和实验结果证明了所推导的SSMR动态模型的准确性和所提出控制器的有效性。

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