Integrated diversity front-end for digital satellite radio reception

Juergen Roeber, S. Senega, Andreas Baenisch, A. Hagelauer, R. Weigel, S. Lindenmeier
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引用次数: 2

Abstract

This paper presents a diversity integrated circuit (IC) for digital satellite radio (SDARS) at 2.3GHz. The IC contains an RF circuit which enables fast adaptive processing of up to three antenna signals for maximum ratio combining in a fast fading scenario. The RF front-end of the diversity system is integrated using 150nm CMOS technology. The phase of each of the three input paths can be adjusted in quantized steps of 45° from 0° to 360°. If the input signal of one path suffers from fading, a single path can be completely turned off for reducing the power consumption. The diversity IC is evaluated by means of laboratory measurements as well as by tests where antenna signals of real fading scenarios are processed using the presented IC. The results show a typical improvement in radio reception of more than a factor of 4 compared to a conventional reception system.
用于数字卫星无线电接收的集成分集前端
提出了一种用于2.3GHz数字卫星无线电的分集集成电路(IC)。该集成电路包含一个射频电路,能够快速自适应处理多达三个天线信号,在快速衰落场景中实现最大比率组合。分集系统的射频前端采用150nm CMOS技术集成。三个输入路径的相位可以在45°的量化步长从0°到360°进行调整。如果一条路径的输入信号出现衰落,则可以完全关闭一条路径以降低功耗。分集集成电路通过实验室测量以及使用所提出的集成电路处理真实衰落场景的天线信号的测试来评估。结果表明,与传统接收系统相比,无线电接收方面的典型改进超过4倍。
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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