Low power analog-to-digital conversion in millimeter wave systems: Impact of resolution and bandwidth on performance

O Orhan, E Erkip, S Rangan - 2015 Information Theory and …, 2015 - ieeexplore.ieee.org
2015 Information Theory and Applications Workshop (ITA), 2015ieeexplore.ieee.org
The wide bandwidth and large number of antennas used in millimeter wave systems put a
heavy burden on the power consumption at the receiver. In this paper, using an additive
quantization noise model, the effect of analog-digital conversion (ADC) resolution and
bandwidth on the achievable rate is investigated for a multi-antenna system under a receiver
power constraint. Two receiver architectures, analog and digital combining, are compared in
terms of performance. Results demonstrate that:(i) For both analog and digital combining …
The wide bandwidth and large number of antennas used in millimeter wave systems put a heavy burden on the power consumption at the receiver. In this paper, using an additive quantization noise model, the effect of analog-digital conversion (ADC) resolution and bandwidth on the achievable rate is investigated for a multi-antenna system under a receiver power constraint. Two receiver architectures, analog and digital combining, are compared in terms of performance. Results demonstrate that: (i) For both analog and digital combining, there is a maximum bandwidth beyond which the achievable rate decreases; (ii) Depending on the operating regime of the system, analog combiner may have higher rate but digital combining uses less bandwidth when only ADC power consumption is considered, (iii) digital combining may have higher rate when power consumption of all the components in the receiver front-end are taken into account.
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