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Dual-Antenna RF CMOS Front-End for Interferer Removal in Ultra-Wideband Systems

机译:用于超宽带系统中干扰去除的双天线RF CMOS前端

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Many ultra-wideband (UWB) systems are challenged by strong jammers and narrowband interferers. Using two antennas, we demonstrate a robust UWB radio frequency (RF) front-end design in a 0.25 urn mixed-signal complementary metal oxide semiconductor (CMOS) technology. The proposed realization is capable of adaptively removing a high-power, narrowband interferer early in the receiver chain avoiding front-end saturation and preserving UWB signal power. The early interferer removal resulting in interferer-free demodulation is based on the least mean squares (LMS) algorithm and achieved through a novel combiner low-noise amplifier and noise optimized filtering. Circuit level RF simulations of the proposed circuitry indicate a maximum improvement in signal-to-interference ratio of 39.6 dB.
机译:许多超宽带(UWB)系统都受到强干扰和窄带干扰的挑战。我们使用两根天线,以0.25微米混合信号互补金属氧化物半导体(CMOS)技术演示了强大的UWB射频(RF)前端设计。所提出的实现能够在接收器链的早期自适应地去除高功率,窄带干扰源,从而避免前端饱和并保留UWB信号功率。尽早消除干扰源可实现无干扰解调,这是基于最小均方(LMS)算法并通过新型组合器低噪声放大器和噪声优化滤波实现的。拟议电路的电路级RF仿真表明,信号干扰比最大改善了39.6 dB。

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