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Spatio-temporal delta-sigma modulation for shared wideband transmit arrays

机译:用于共享宽带传输阵列的时空Δ-sigma调制

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Future array-based RF transmit systems will require linear amplification to preserve the spectral integrity of simultaneously transmitted signals. Classical delta-sigma modulation, paired with an emerging class of high-power switches, can provide this linearity by using a high-speed, low-resolution quantizer and shaping the resulting quantization errors out of the signal band. The drawback is that high clock rates are required to achieve high SNR. Recently, we have proposed shaping quantization errors jointly in temporal and spatial frequency, pushing quantization errors both out of band and to nonpropagating spatial frequencies. This provides greater SNR for a given clock rate or the same SNR at a reduced clock rate relative to conventional delta-sigma modulation, while retaining its characteristic high linearity. We present an overview of the spatio-temporal delta-sigma array architecture and present the results of some preliminary hardware experiments with a small linear array.
机译:基于阵列的RF发射系统将需要线性放大来保留同时发送信号的光谱完整性。经典的Δ-sigma调制,与新出现的高功率开关配对,可以通过使用高速,低分辨率量化器和将所得量化误差从信号频带塑化出来的这种线性度。缺点是实现高SNR的高时钟速率。最近,我们已经提出了在时间和空间频率中共同地形成量化误差,推动频带外部的量化误差和非销长空间频率。这为给定时钟速率或相同的SNR提供了更大的SNR,而相对于传统的Δ-sigma调制,则以降低的时钟速率为单位,同时保持其特征高线性度。我们概述了时空Δ-​​sigma阵列架构的概述,并呈现了具有小线性阵列的一些初步硬件实验的结果。

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