Optimizing resolution of signals in a low-IF receiver

S. Dwivedi, B. Amrutur, N. Bhat
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引用次数: 3

Abstract

The resolution of the digital signal path has a crucial impact on the design, performance and the power dissipation of the radio receiver data path, downstream from the ADC. The ADC quantization noise has been traditionally included with the Front End receiver noise in calculating the SNR as well as BER for the receiver. Using the IEEE 802.15.4 as an example, we show that this approach leads to an over-design for the ADC and the digital signal path, resulting in larger power. More accurate specifications for the front-end design can be obtained by making SNRreg a function of signal resolutions. We show that lower resolution signals provide adequate performance and quantization noise alone does not produce any bit-error. We find that a tight bandpass filter preceding the ADC can relax the resolution requirement and a 1-bit ADC degrades SNR by only 1.35 dB compared to 8-bit ADC. Signal resolution has a larger impact on the synchronization and a 1-bit ADC costs about 5 dB in SNR to maintain the same level of performance as a 8-bit ADC.
低中频接收机信号分辨率的优化
数字信号路径的分辨率对ADC下游无线电接收机数据路径的设计、性能和功耗有着至关重要的影响。传统上,在计算接收机的信噪比和误码率时,ADC量化噪声被包括在前端接收机噪声中。以IEEE 802.15.4为例,我们表明这种方法会导致ADC和数字信号路径的过度设计,从而导致更大的功率。通过使SNRreg成为信号分辨率的函数,可以获得更准确的前端设计规格。我们表明,较低的分辨率信号提供足够的性能和量化噪声单独不会产生任何误码。我们发现,在ADC前加一个紧凑的带通滤波器可以降低分辨率要求,与8位ADC相比,1位ADC的信噪比仅降低1.35 dB。信号分辨率对同步有较大的影响,1位ADC的信噪比约为5 dB,以保持与8位ADC相同的性能水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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