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Communication system performance - detailed modeling of a power amplifier with two modulated input signals

机译:通讯系统性能 - 具有两个调制输入信号的功率放大器的详细建模

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The performance of multicarrier frequency division multiple access (FDMA) wireless communication systems is impacted by amplifier nonlinearities. It is vital to precisely model limiters and high power amplifiers (HPAs) to determine the spectrum distortion and other types of degradation associated with multicarrier communication systems. Contemporary simulation tools can be employed to precisely ascertain intermodulation (IM) distortion and its effect and impact on both in-band and out-of-band IM performance in a computationally timely manner. This paper illustrates analysis and simulation results in a parameterized form when the amplifier input consists of two 8-PSK modulated signals with raised cosine filter shaping. One of the significant parameters in these analyses and simulated results is the HPA operational back-off (OBO) power level, which is studied over a range of about 6 dB. The simulation illustrates the intermodulation distortion both within the signal band and outside the signal band. A novel approach is used to represent an HPA in terms of a power series expansion, which converges very rapidly and gives significant insight and provides a useful tool in predicting the spectral content of the HPA output. The results contained in this submission were generated in whole, or in part, through work supporting the MILSATCOM joint program office (MJPO). The authors are very appreciative of the support provided by the SMC/MC program office of the Space and Missile Center in this effort.
机译:多载波频分多址(FDMA)无线通信系统的性能受放大器非线性的影响。精确地模拟限位器和高功率放大器(HPA)至关重要,以确定与多载波通信系统相关联的频谱失真和其他类型的劣化。可以使用当代仿真工具来精确地确定互调(IM)失真及其效果,并以计算及时的方式对带内带外的性能和影响。本文示出了当放大器输入由具有升高的余弦滤波器成形的两个8-PSK调制信号组成时的分析和仿真结果。这些分析和模拟结果中的其中一个重要参数是HPA操作退避(OBO)功率电平,其在约6dB的范围内研究。仿真示出了信号频带内和信号频带外部的互调失真。一种新的方法用于代表功率串联扩展的HPA,这使得很快收敛并提供了显着的洞察力,并提供了预测HPA输出的光谱内容的有用工具。本提交中包含的结果全部或部分通过支持MILSATCOM联合计划办公室(MJPO)。作者非常欣赏SMC / MC计划办公室在这项工作中的SMC / MC计划办事处提供的支持。

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