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Circuit-Parameter-Independent Nonlinearity Compensation for Boost Converter Operated in Discontinuous Current Mode

机译:不连续电流模式下升压转换器的电路参数无关的非线性补偿

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摘要

This paper proposes a current control method for discontinuous current mode (DCM) in order to achieve the same control performance as continuous current mode (CCM) in a boost converter. By utilizing the duty ratio at the previous calculation period to compensate for a DCM nonlinearity, the controller, which is designed for CCM, can also be used in DCM. In the frequency analysis, the cutoff frequency of the proposed DCM current control agrees exactly to the design value, which is 2 kHz, whereas the cutoff frequency of the conventional DCM current control results in high error of 47.5%. In the current step response experiment with a 360-W prototype and the switching frequency of 20 kHz, the experimental DCM current response almost agrees with the conventional CCM current response, which are 380-μs rise time for both CCM and DCM, 9% and 8% overshoot for CCM and DCM, respectively. Furthermore, the computation time of the proposed DCM current control is shorter 35% than the conventional DCM current control.
机译:本文提出了一种用于不连续电流模式(DCM)的电流控制方法,以实现与升压转换器中的连续电流模式(CCM)相同的控制性能。通过利用前一个计算周期的占空比来补偿DCM非线性,专为CCM设计的控制器也可以在DCM中使用。在频率分析中,建议的DCM电流控制的截止频率与设计值完全一致,为2 kHz,而常规DCM电流控制的截止频率会导致47.5%的高误差。在具有360W原型和20kHz开关频率的电流阶跃响应实验中,实验DCM电流响应几乎与常规CCM电流响应一致,CCM和DCM的上升时间均为380μs,分别为9%和CCM和DCM分别超出8%。此外,提出的DCM电流控制的计算时间比常规DCM电流控制的计算时间短35%。

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