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A Digital Amplifier with hi-fi Signal Controlled by DSP

机译:具有由DSP控制的Hi-Fi信号的数字放大器

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Digital amplifier is widely used because of its high efficiency, compact size, environmental protection and anti-disturbance. However, it is difficult for a digital amplifier to achieve high fidelity due to switching characteristic, parasitic capacitance, internal resistance of power supply, voltage ripple and core loss of inductor. Especially, the internal resistance and core loss have great influence on signal of digital amplifier. This paper emphasizes the influence of the internal resistance of power supply on digital amplifier signal. In this paper, an equivalent circuit model of power stage can be deduced from the principle of difference amplifier. In this model, the amplitude of pulse wave decreases while duty ratio increases because of the existence of internal resistance of power supply. If pulse waves are converted into analog signal by LC filter, distortion could get more deteriorated. Therefore, a new control strategy, namely advanced compensation equation, is presented to achieve hi-fi signal for difference amplifier. Based on the equation, a compensated coefficient k increases linearly with the original PCM x, and k decreases with x. Test results show that this strategy is effective and correct.
机译:由于其高效率,紧凑的尺寸,环保和防干扰,数字放大器被广泛使用。然而,由于开关特性,寄生电容,电源的内阻,电压纹波和电感磁芯损失,难以实现高保真性。特别是,内阻和核心损失对数字放大器信号有很大影响。本文强调了电源内阻对数字放大器信号的影响。本文可以从差分放大器原理推导出功率级等效电路模型。在该模型中,由于电源内阻的存在,脉冲波的幅度降低而占空比增加。如果脉冲波通过LC滤波器转换成模拟信号,则失真可能会变得更加恶化。因此,提出了一种新的控制策略,即先进的补偿方程,以实现差别放大器的高保真信号。基于等式,补偿系数K与原始PCM X线性增加,k随x减小。测试结果表明,该策略是有效和正确的。

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