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首页> 外文期刊>IEEE transactions on circuits and systems . I , Regular papers > $Delta-Sigma$ Noise-Shaping in 2-D Space-Time for Wideband Antenna Array Receivers
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$Delta-Sigma$ Noise-Shaping in 2-D Space-Time for Wideband Antenna Array Receivers

机译: $ Delta- Sigma $ 宽带二维时空中的噪声整形天线阵列接收器

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摘要

This paper proposes multi-dimensional signal processing methods to extend Delta - Sigma modulation into the two-dimensional (2-D) space, time case. The proposed 2-D noise-shaping methods employ lossless discrete integrators (LDIs) to reduce the spectral overlap of the regions of support (ROSS) of array signals with that of both thermal and quantization noise in microwave and mm-wave array processing systems. Spatio-temporal low-pass filtering can then be used to improve the overall noise figure, linearity, and resolution of the resulting N-port receiver. A proof-of-concept 65-port receiver that uses first-order Delta - Sigma within both the low-noise amplifier and analog-to-digital converter (ADC) has been designed in the UMC 65-nm CMOS process. Detailed circuit simulations with wideband RF inputs at a center frequency of 4 GHz confirm that the proposed 2-D noise-shaping approach provides significant improvements in noise, linearity, and resolution. Specifically, noise figure (NF) improves by 1.5 dB, IIP3 improves by 15 dB, and the effective number of bits (ENOB) improves by 3.1 bits. Experimental results from a low-frequency board-level implementation of a 64-port ADC with first-order noise shaping are also presented.
机译:本文提出了多维信号处理方法,以将Delta-Sigma调制扩展到二维(2-D)空间时域。所提出的二维噪声整形方法采用无损离散积分器(LDI),以减少阵列信号的支撑区域(ROSS)的频谱重叠,同时减小微波和毫米波阵列处理系统中的热噪声和量化噪声。然后可以使用时空低通滤波来改善最终N端口接收机的整体噪声系数,线性度和分辨率。在UMC 65纳米CMOS工艺中设计了一种概念验证的65端口接收机,该接收机在低噪声放大器和模数转换器(ADC)中均使用一阶Delta-Sigma。使用中心频率为4 GHz的宽带RF输入进行的详细电路仿真证实,所提出的2-D噪声整形方法可显着改善噪声,线性和分辨率。具体而言,噪声系数(NF)提高1.5 dB,IIP3提高15 dB,有效位数(ENOB)提高3.1位。还给出了具有一阶噪声整形的低频64位ADC的板级实现的实验结果。

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