Mixed-ADC Massive MIMO Uplink in Frequency-Selective Channels
arXiv:1601.02082 · doi:10.1109/TCOMM.2016.2614311
Abstract
The aim of this paper is to investigate the recently developed mixed-ADC architecture for frequency-selective channels. Multi-carrier techniques such as orthogonal frequency division multiplexing (OFDM) are employed to handle inter-symbol interference (ISI). A frequency-domain equalizer is designed for mitigating the inter-carrier interference (ICI) introduced by the nonlinearity of one-bit quantization. For static single-input-multiple-output (SIMO) channels, a closed-form expression of the generalized mutual information (GMI) is derived, and based on which the linear frequency-domain equalizer is optimized. The analysis is then extended to ergodic time-varying SIMO channels with estimated channel state information (CSI), where numerically tight lower and upper bounds of the GMI are derived. The analytical framework is naturally applicable to the multi-user scenario, for both static and time-varying channels. Extensive numerical studies reveal that the mixed-ADC architecture with a small proportion of high-resolution ADCs does achieve a dominant portion of the achievable rate of ideal conventional architecture, and that it remarkably improves the performance as compared with one-bit massive MIMO.
14 pages, 10 figures, to appear in IEEE Transactions on Communications
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- Bayesian Optimal Data Detector for Hybrid mmWave MIMO-OFDM Systems with Low-Resolution ADCs
- Spectral Efficiency of Mixed-ADC Massive MIMO
- Multipair Massive MIMO Relaying Systems with One-Bit ADCs and DACs
- Bayesian Optimal Data Detector for mmWave OFDM System with Low-Resolution ADC
- Reliable OFDM Receiver with Ultra-Low Resolution ADC
- Capacity Bounds for One-Bit MIMO Gaussian Channels with Analog Combining
- Mixed-ADC/DAC Multipair Massive MIMO Relaying Systems: Performance Analysis and Power Optimization
- Full-Duplex Massive MIMO Relaying Systems with Low-Resolution ADCs
- Finite-Alphabet Precoding for Massive MU-MIMO with Low-resolution DACs
- The Distributed MIMO Scenario: Can Ideal ADCs Be Replaced by Low-resolution ADCs?
- Performance Analysis of Multi-Cell Millimeter Wave Massive MIMO Networks with Low-Precision ADCs