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Current-Mode Synthetic Control Technique for High-Efficiency DC–DC Boost Converters Over a Wide Load Range

机译:宽负载范围内的高效DC-DC Boost转换器的电流模式综合控制技术

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This paper proposes a current-mode synthetic control (CSC) technique for the design of boost converters to overcome the difficulty in designing a current-ripple hysteresis boost converter and to maintain high conversion efficiency over a wide load range. The CSC technique has a high accuracy because of the additional voltage path through the error amplifier. A smooth load transient response is maintained when the operation transits from continuous conduction mode with a nearly constant switching frequency to discontinuous conduction mode with a load-dependent switching frequency. Generally, ripple performance, light-load efficiency, and switching frequency are traded off in the design of hysteresis control regulator. In this paper, a balance among the load-dependent switching frequencies at light loads results in high power conversion efficiency compared with conventional pulsewidth modulation converter and attains compact ripple performance. The experimental results show that the output voltage ripple can be kept ${<}{rm 50}~{rm mV}$ over a wide load current range from 10 to 400 mA, where as power conversion efficiency is maintained at 78% at a load current of 10 mA when the switching frequency is decreased from 5 to 2 MHz.
机译:本文提出了一种用于升压转换器设计的电流模式综合控制(CSC)技术,以克服设计电流纹波磁滞升压转换器的困难,并在较宽的负载范围内保持较高的转换效率。由于通过误差放大器的附加电压路径,CSC技术具有很高的精度。当操作从具有几乎恒定的开关频率的连续导通模式转换到具有取决于负载的开关频率的不连续导通模式时,可以保持平稳的负载瞬态响应。通常,在磁滞控制调节器的设计中要权衡纹波性能,轻载效率和开关频率。在本文中,轻负载下与负载有关的开关频率之间的平衡导致与常规脉宽调制转换器相比具有较高的功率转换效率,并获得紧凑的纹波性能。实验结果表明,可以保持输出电压纹波 $ {<} {rm 50}〜{rm mV} $ 在10至400 mA的宽负载电流范围内,其中当开关频率从5 MHz降低至2 MHz时,在10 mA负载电流下功率转换效率保持在78%。

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