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Narrow Pulse Elimination PWM for Multilevel Digital Audio Power Amplifiers Using Two Cascaded H-Bridges as a Nine-Level Converter

机译:使用两个级联H桥作为九电平转换器的多级数字音频功率放大器的窄脉冲消除PWM

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摘要

This paper presents a methodology to reduce total harmonic distortion (THD) in digital audio power amplifiers, using two new approaches: 1) a multilevel converter made of two cascaded full-bridges, with suitable power supplies to operate as a nine-level hybrid type converter and 2) a new pulsewidth modulation (PWM) technique called narrow pulse elimination (NPE) PWM. The proposed nine-level converter uses only eight MOSFETs. Unlike conventional PWM, the NPE PWM does not generate excessively narrow pulses, so that power semiconductors nonideal delays and switching times are still negligible. Therefore, the nine-level output voltage THD, mostly introduced in the power stage, is strongly reduced. With the NPE technique, the resolution of the generated PWM is no longer limited by the switching speed of the output switches, but only by the frequency of digital processing circuit. Simulation and experimental results from a laboratory prototype are presented in order to show the effectiveness of the proposed approaches
机译:本文提出了一种使用两种新方法来降低数字音频功率放大器中总谐波失真(THD)的方法:1)由两个级联全桥构成的多电平转换器,并具有合适的电源以用作九电平混合类型转换器和2)一种称为窄脉冲消除(NPE)PWM的新脉宽调制(PWM)技术。提议的九电平转换器仅使用八个MOSFET。与传统的PWM不同,NPE PWM不会产生过窄的脉冲,因此功率半导体的非理想延迟和开关时间仍然可以忽略不计。因此,大大降低了大部分引入功率级的九电平输出电压THD。使用NPE技术,生成的PWM的分辨率不再受限于输出开关的开关速度,而仅受限于数字处理电路的频率。提出了来自实验室原型的仿真和实验结果,以证明所提出方法的有效性

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