首页> 外文会议>IEEE MTT-S International Microwave Conference on Hardware and Systems for 5G and Beyond >Flexible Architectures for Concurrent Reception of Multiple RF Carriers and Compressed-Sampling Signal Detection in Frequency and Direction-of-Arrival
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Flexible Architectures for Concurrent Reception of Multiple RF Carriers and Compressed-Sampling Signal Detection in Frequency and Direction-of-Arrival

机译:灵活的架构,可同时接收多个RF载波并在到达频率和到达方向时进行压缩采样信号检测

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The modulated-clock downconversion mixer (MC-DM) and the antenna-weight-modulated phased-array (AWM-PA) are explored as key enablers of ambient-aware, opportunistic receivers in emerging 5G deployments. The benefits of the MC-DM is demonstrated first with an out-of-channel interferer reflecting, inter-band carrier aggregation receiver architecture where the RF carrier combination is selected simply by programming the frequency of the CW waveform used to modulate the mixer clock. Second, a wideband spectrum scanner architecture utilizing pseudo-random modulation of the downconversion mixer clock and Compressed-Sampling (CS) DSP is explored where a few large interferers are detected in ns time. The benefits of the AWM-PA is demonstrated with a phased-array architecture utilizing pseudo-random modulation of the antenna weights and CS DSP where a few large DoAs are detected in us time.
机译:调制时钟下变频混频器(MC-DM)和天线权重调制相控阵(AWM-PA)被视为新兴的5G部署中感知环境的机会接收器的关键推动力。首先通过信道外干扰反射,带间载波聚合接收器体系结构展示MC-DM的优势,其中只需通过编程用于调制混频器时钟的CW波形的频率即可选择RF载波组合。其次,探索了一种利用下变频混频器时钟的伪随机调制和压缩采样(CS)DSP的宽带频谱扫描仪架构,其中在ns时间内检测到一些大的干扰源。 AWM-PA的优势通过相控阵架构得到证明,该架构利用天线权重的伪随机调制和CS DSP,在我们的时代中检测到一些大的DoA。

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