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Constant Switching Frequency Self-Oscillating Controlled Class-D Amplifiers

机译:恒定开关频率自振荡受控D类放大器

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摘要

The self-oscillating control approach has been used extensively in class-D amplifiers. It has several advantages such as high bandwidth and high audio performance. However, one of the primary disadvantages in a self-oscillating controlled system is that the switching frequency of the amplifier varies with the ratio of the output voltage to the input rail voltage. In other words, the switching frequency varies with the duty cycle of the output. The drop in the frequency results in lower control bandwidth and higher output voltage ripple, which are undesirable. This paper proposes a new self-oscillating control scheme that maintains a constant switching frequency over the full range of output voltage. The frequency difference is processed by a compensator whose output adjusts the total loop gain of the control system. It has been proven by simulation that a con-stant switching frequency self-oscillating converter is achieved and the proposed control circuit performs satisfactorily.
机译:自激振荡控制方法已在D类放大器中广泛使用。它具有多个优点,例如高带宽和高音频性能。但是,自激振荡控制系统的主要缺点之一是放大器的开关频率随输出电压与输入轨电压之比而变化。换句话说,开关频率随输出的占空比而变化。频率下降导致较低的控制带宽和较高的输出电压纹波,这是不希望的。本文提出了一种新的自激振荡控制方案,该方案可在整个输出电压范围内保持恒定的开关频率。频率差由补偿器处理,补偿器的输出调整控制系统的总环路增益。通过仿真证明,实现了恒定的开关频率自激转换器,并且所提出的控制电路性能令人满意。

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