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A novel approach to current-mode control of the constant frequency power converters

机译:一种新的恒流功率转换器电流模式控制方法

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This paper presents new methods of current mode control for pulse width modulated (PWM) converters. Proposed approaches of control expands the band of duty-cycle ratio variations without any deteriorating influence on system stability. Furthermore, in the case of the quasi-charge control, system becomes inherently stable. Small-signal models are developed for both control circuits. The models are derived for converters operating in the continuous conduction mode. The models are accurate up to half of the switching frequency. The proposal small-signal models are used to assess system stability considerations. The proposed control circuits are suitable for all applications where the average inductor current needs to be controlled, as it is the case in the power factor correction circuits as well as in the battery charger/dischargers. The subharmonic oscillations, present in true average control scheme, are eliminated by using proper compensation network in the current loop. Model predictions are well confirmed through simulation results.
机译:本文为脉冲宽度调制(PWM)转换器提供了新的电流模式控制方法。所提出的控制方法扩展了占空比比变化的乐谱,而不会对系统稳定性的影响恶化。此外,在准电荷控制的情况下,系统固有稳定。为两个控制电路开发了小信号模型。导出模型,用于以连续导通模式运行的转换器。该模型可准确到开关频率的一半。提案小信号模型用于评估系统稳定性考虑因素。所提出的控制电路适用于需要控制平均电感电流的所有应用,因为它是功率因数校正电路以及电池充电器/放电器中的情况。通过在当前环路中使用适当的补偿网络,消除了真正平均控制方案中的子发声振荡。模型预测通过仿真结果确认。

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