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Efficient, low-distortion switch-mode power amplifier for amplitude modulation

机译:用于幅度调制的高效,低失真开关模式功率放大器

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摘要

Amplitude modulation systems are used in many areas of engineering, especially communication based disciplines. Typical systems have low-level signals which encode the desired information to be transmitted. These low-level signals are usually not of adequate power to transmit the desired information across a target medium, thus requiring modulation and power amplification. In general, two goals of power amplifier design are low-distortion and high-efficiency. To meet these goals, a unique switch-mode power amplifier intended for amplitude modulation which utilizes spectral content at the carrier frequency is designed, simulated, and built. Theoretical predictions of total harmonic distortion (THD) and efficiency are made, and the constructed prototype results are measured. The THD for a 1 kHz modulating tone is predicted to be 0.9% and measured to be 4.15% worst case. The amplifier output stage efficiency is predicted to be 95.8% and measured to be 95.4% worst case.
机译:幅度调制系统用于工程的许多领域,尤其是基于通信的学科。典型的系统具有低电平信号,该信号对要发送的所需信息进行编码。这些低电平信号通常没有足够的功率来在目标介质上传输所需的信息,因此需要进行调制和功率放大。通常,功率放大器设计的两个目标是低失真和高效率。为了实现这些目标,设计,模拟和构建了一个独特的用于幅度调制的开关模式功率放大器,它利用了载波频率上的频谱内容。对总谐波失真(THD)和效率进行了理论预测,并测量了所构建的原型结果。预测1 kHz调制音的THD为0.9%,最坏情况测得为4.15%。放大器输出级效率预计为95.8%,最坏情况为95.4%。

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