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High-Efficiency Slope Compensator (HSC) with Input-Independent Load Condition Identification in Current Mode DC/DC Buck Converters

机译:高效斜坡补偿器(HSC),具有电流模式DC / DC降压转换器的输入无关的负载条件识别

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A high-efficiency slope compensator (HSC) is presented to achieve power reduction in current-mode control and provide input-independent load condition identification for mode switch in hybrid PWM/PFM system. That is, according to load condition, an adaptive mode transition can be decided by the HSC circuit and not varied by the variation of input voltage. Therefore, for a hybrid PWM/PFM system, the power conversion efficiency can be kept high over a wide load range. Besides, the pulse-ramp slope compensation technique prevents the current-mode DC-DC converter from having the sub-harmonic oscillation problem and reduces power dissipation of the slope compensator. Simulation results show that the mode transition is accurately decided at the optimum point without being affected by the variation of input voltage. The power conversion efficiency is improved about 5% in PWM/PFM transition region.
机译:提出了一种高效的斜率补偿器(HSC)以实现电流模式控制的功率降低,并为混合PWM / PFM系统中的模式开关提供输入无关的负载条件识别。也就是说,根据负载条件,可以通过HSC电路决定自适应模式转换,而不是通过输入电压的变化而变化。因此,对于混合动力PWM / PFM系统,可以在宽负载范围内保持电力转换效率。此外,脉冲斜坡斜坡补偿技术防止电流模式DC-DC转换器具有副谐波振荡问题并降低斜率补偿器的功率耗散。仿真结果表明,在最佳点处精确地确定模式转换而不受输入电压的变化的影响。 PWM / PFM过渡区域的功率转换效率提高了约5%。

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