Waveform and RF power amplifier interdependencies in battery-powered tactical radio applications

John W. Nieto, Richard Buckley, William Furman
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引用次数: 2

Abstract

This paper will examine the subtle interdependencies of physical layer waveforms and RF power amplifiers when applied to a battery-powered tactical radio system. Traditional physical layer analysis usually compares the signal-to-noise ratio (SNR) required to achieve a desired bit error rate (BER) but does not consider how the peak-power to average-power ratio (PAPR) of the waveform will affect the design and performance of the power amplifier. This paper will address both the BER performance of physical layer waveforms and the class/efficiency/power constraints of power amplifiers for use in a battery-powered tactical environment.
电池供电战术无线电应用中波形和射频功率放大器的相互依赖性
本文将研究应用于电池供电战术无线电系统时物理层波形和射频功率放大器之间微妙的相互依赖关系。传统的物理层分析通常比较实现理想误码率所需的信噪比(SNR),而不考虑波形的峰值功率与平均功率比(PAPR)如何影响功率放大器的设计和性能。本文将讨论物理层波形的误码率性能以及在电池供电的战术环境中使用的功率放大器的类别/效率/功率限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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