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A Software-Defined Radio Receiver Architecture Robust to Out-of-Band Interference

机译:软件定义的无线电接收器架构具有强大的带外干扰能力

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摘要

In a software-defined radio (SDR) receiver it is desirable to minimize RF band-filtering for flexibility, size and cost reasons, but this leads to increased out-of-band interference (OBI). Besides harmonic and intermodulation distortion (HD/IMD), OBI can also lead to blocking and harmonic mixing. A wideband LNA [1, 2] amplifies signal and interference with equal gain. Even a low gain of 6dB can clip 0dBm OBI to a 1.2V supply, blocking the receiver. Hard-switching mixers not only translate the wanted signal to baseband but also the interference around LO harmonics. Harmonic rejection (HR) mixers have been used [3, 1, 4], but are sensitive to phase and gain mismatch. Indeed the HR in [4] shows a large spread, whereas other work only shows results from one chip [3, 1]. This paper describes techniques to relax blocking and HD/IMD, and make HR robust to mismatch.
机译:在软件定义的无线电(SDR)接收器中,出于灵活性,尺寸和成本的原因,希望使RF频带滤波最小化,但这会导致带外干扰(OBI)增加。除了谐波和互调失真(HD / IMD),OBI还可能导致阻塞和谐波混合。宽带LNA [1、2]以相等的增益放大信号和干扰。即使是6dB的低增益也可以将0dBm OBI钳位到1.2V电源,从而阻塞了接收器。硬开关混频器不仅可以将所需信号转换为基带,而且还可以将本振谐波周围的干扰。已经使用了谐波抑制(HR)混频器[3,1,4],但对相位和增益失配很敏感。确实,[4]中的HR显示出很大的差异,而其他工作仅显示了一个芯片的结果[3,1]。本文介绍了放松阻塞和HD / IMD并使HR健壮不匹配的技术。

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