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A Flexible Phased-Array Architecture for Reception and Rapid Direction-of-Arrival Finding Utilizing Pseudo-Random Antenna Weight Modulation and Compressive Sampling

机译:利用伪随机天线权重调制和压缩采样的接收和快速到达方向查找的灵活相控阵架构

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摘要

The direct space-to-information converter (DSIC) unifies conventional delay-and-sum analog conventional beamforming (CBF) with compressive sampling (CS) rapid direction-of-arrival (DOA) finding into a single, reconfigurable phased-array receiver architecture. Where current CBF-based DOA scanners need to exhaustively search through multiple DOA angles, the DSIC is able to receive energy from all possible angles by modulating its antenna weights psuedo-randomly. The DSIC RF-ASIC can operate from 1 to 3 GHz, was fabricated in 65-nm CMOS, and includes eight direct-conversion paths each delivering 32-dB conversion gain, 3.3-dBm in-band IIP3, and 6.4-dB NF while consuming 19.8 mW from 1.2 V. The DSIC RF-ASIC has two modes of operation, CS-DOA and CBF-Reception and can switch between them in less than 1 mu s. In CS-DOA mode, the DSIC RF-ASIC finds the DOA of a single signal in 1 mu s consuming 158 nJ which is 4x faster and 1.5x less energy than a comparable CBF-based DOA scanner.
机译:直接空间信息转换器(DSIC)将传统的延迟和求和模拟传统波束形成(CBF)与压缩采样(CS)快速到达方向(DOA)结合到一个可重构的相控阵接收机架构中。在当前基于CBF的DOA扫描仪需要详尽搜索多个DOA角度的情况下,DSIC能够通过伪随机地调整其天线权重来从所有可能的角度接收能量。 DSIC RF-ASIC的工作频率范围为1至3 GHz,采用65 nm CMOS制成,并包括8条直接转换路径,每条路径均提供32 dB的转换增益,3.3 dBm的带内IIP3和6.4 dB的NF。 DSIC RF-ASIC从1.2 V功耗达到19.8mW。CS-DOA和CBF-Reception具有两种工作模式,并且可以在不到1μs的时间内切换。在CS-DOA模式下,DSIC RF-ASIC在1毫秒内发现单个信号的DOA,消耗158 nJ的能量,这比基于CBF的DOA扫描仪快4倍,能耗低1.5倍。

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