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Adaptive and Robust Digital Harmonic-Reject Mixer With Optimized Local Oscillator Spacing

机译:具有优化的本地振荡器间距的自适应鲁棒数字谐波抑制混频器

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Harmonic-reject mixers (HRM) are commonly used in wideband receivers to suppress the effects of spurious harmonic interferers. Both analog and digital HRMs have been proposed in the literature. In existing works, the local oscillator (LO) phases are assumed to be equally spaced. When viewed as a multiuser access system, the drawback of equally-spaced LO phases is that the signature vectors of the desired signal and some harmonic interferers become aligned, limiting the number of interferers that can be attenuated. In this paper, a digital HRM with non-uniform phase spacing that can suppress additional harmonics while being robust to gain and phase mismatches is described. This paper also presents a low-complexity, adaptive and robust digital HRM receiver that enables the fewest LOs and analog-to-digital converters necessary depending on the interference environment for low power. The performance of the adaptive non-uniformly spaced HRM is shown to be significantly superior to existing HRMs with equal LO phase spacing.
机译:谐波抑制混频器(HRM)通常用于宽带接收机中,以抑制寄生谐波干扰的影响。在文献中已经提出了模拟和数字HRM。在现有工作中,假定本地振荡器(LO)相位相等。当被视为多用户接入系统时,等间隔的LO相位的缺点是所需信号的签名矢量和某些谐波干扰源变得对齐,从而限制了可以衰减的干扰源数量。本文介绍了一种具有非均匀相距的数字HRM,它可以抑制额外的谐波,同时对增益和相位失配具有鲁棒性。本文还提出了一种低复杂度,自适应且健壮的数字HRM接收器,根据低功耗的干扰环境,它可以实现最少的LO和模数转换器。自适应非均匀间隔HRM的性能显示出明显优于具有相同LO相距的现有HRM。

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