MmWave Massive MIMO Based Wireless Backhaul for 5G Ultra-Dense Network
arXiv:1508.03940 · doi:10.1109/MWC.2015.7306533
Abstract
Ultra-dense network (UDN) has been considered as a promising candidate for future 5G network to meet the explosive data demand. To realize UDN, a reliable, Gigahertz bandwidth, and cost-effective backhaul connecting ultra-dense small-cell base stations (BSs) and macro-cell BS is prerequisite. Millimeter-wave (mmWave) can provide the potential Gbps traffic for wireless backhaul. Moreover, mmWave can be easily integrated with massive MIMO for the improved link reliability. In this article, we discuss the feasibility of mmWave massive MIMO based wireless backhaul for 5G UDN, and the benefits and challenges are also addressed. Especially, we propose a digitally-controlled phase-shifter network (DPSN) based hybrid precoding/combining scheme for mmWave massive MIMO, whereby the low-rank property of mmWave massive MIMO channel matrix is leveraged to reduce the required cost and complexity of transceiver with a negligible performance loss. One key feature of the proposed scheme is that the macro-cell BS can simultaneously support multiple small-cell BSs with multiple streams for each smallcell BS, which is essentially different from conventional hybrid precoding/combining schemes typically limited to single-user MIMO with multiple streams or multi-user MIMO with single stream for each user. Based on the proposed scheme, we further explore the fundamental issues of developing mmWave massive MIMO for wireless backhaul, and the associated challenges, insight, and prospect to enable the mmWave massive MIMO based wireless backhaul for 5G UDN are discussed.
This paper has been accepted by IEEE Wireless Communications Magazine. This paper is related to 5G, ultra-dense network (UDN), millimeter waves (mmWave) fronthaul/backhaul, massive MIMO, sparsity/low-rank property of mmWave massive MIMO channels, sparse channel estimation, compressive sensing (CS), hybrid digital/analog precoding/combining, and hybrid beamforming. http://ieeexplore.ieee.org/stamp/stamp.jsp?tp=&arnumber=7306533
Cited by in corpus (46)
- Ultra-Low Latency (ULL) Networks: The IEEE TSN and IETF DetNet Standards and Related 5G ULL Research
- Spatial- and Frequency-Wideband Effects in Millimeter-Wave Massive MIMO Systems
- Deep-Learning-based Millimeter-Wave Massive MIMO for Hybrid Precoding
- Channel Estimation for Millimeter-Wave Massive MIMO with Hybrid Precoding over Frequency-Selective Fading Channels
- Near-Field Channel Estimation in Mixed LoS/NLoS Environments for Extremely Large-Scale MIMO Systems
- An Overview on Resource Allocation Techniques for Multi-User MIMO Systems
- Energy efficiency of mmWave massive MIMO precoding with low-resolution DACs
- Massive MIMO performance with imperfect channel reciprocity and channel estimation error
- Intelligent Reflecting Surface Aided Multi-User Millimeter-Wave Communications for Coverage Enhancement
- Spectral Efficiency Optimization For Millimeter Wave Multi-User MIMO Systems
- Performance Analysis of Reconfigurable Holographic Surfaces in the Near-Field Scenario of Cell-Free Networks Under Hardware Impairments
- Non-Coherent and Backscatter Communications: Enabling Ultra-Massive Connectivity in 6G Wireless Networks
- Enabling Cell-Free Massive MIMO Systems with Wireless Millimeter Wave Fronthaul
- Hybrid Precoding Based on Non-Uniform Quantization Codebook to Reduce Feedback Overhead in Millimeter Wave MIMO Systems
- A Survey on Low Latency Towards 5G: RAN, Core Network and Caching Solutions
- Channel Estimation for mmWave Massive MIMO Based Access and Backhaul in Ultra-Dense Network
- Intelligent Reflecting Surface Enhanced Resilient Design for MEC Offloading over Millimeter Wave Links
- KPI/KQI-Driven Coordinated Multi-Point in 5G: Measurements, Field Trials, and Technical Solutions
- Energy Efficient User Association and Power Allocation in Millimeter Wave Based Ultra Dense Networks with Energy Harvesting Base Stations
- Beamspace Channel Estimation for Millimeter-Wave Massive MIMO Systems with Lens Antenna Array
- An Optimal Low-Complexity Energy-Efficient ADC Bit Allocation for Massive MIMO
- A Survey on Millimeter-Wave Beamforming Enabled UAV Communications and Networking
- Routing Protocols Performance in Mobile Ad-Hoc Networks Using Millimeter Wave
- Millimeter-Wave Full-Duplex UAV Relay: Joint Positioning, Beamforming, and Power Control
- Model-Driven Deep Learning Based Channel Estimation and Feedback for Millimeter-Wave Massive Hybrid MIMO Systems
- Self-Calibration for Massive MIMO with Channel Reciprocity and Channel Estimation Errors
- GMD-Based Hybrid Precoding For Millimeter-Wave Massive MIMO Systems
- Double-Sided Massive MIMO Transceivers for MmWave Communications
- Max-Min Rate of Cell-Free Massive MIMO Uplink with Optimal Uniform Quantization
- A Unified Framework for IRS Enabled Wireless Powered Sensor Networks
- MmWave Hybrid Array with More Users than RF Chains
- Closed-Loop Sparse Channel Estimation for Wideband Millimeter-Wave Full-Dimensional MIMO Systems
- Wideband Hybrid Precoding for Next-Generation Backhaul/Fronthaul Based on mmWave FD-MIMO
- Channel Estimation via Gradient Pursuit for MmWave Massive MIMO Systems with One-Bit ADCs
- Optimal Bit Allocation Variable-Resolution ADC for Massive MIMO
- Hybrid Analog and Digital Beamforming Design for Channel Estimation in Correlated Massive MIMO Systems
- Joint Association and Resource Allocation for Multi-Hop Integrated Access and Backhaul (IAB) Network
- Over-Sampling Codebook-Based Hybrid Minimum Sum-Mean-Square-Error Precoding for Millimeter-Wave 3D-MIMO
- Multiuser Millimeter Wave Beamforming Strategies with Quantized and Statistical CSIT
- On the Power Leakage Problem in Millimeter-Wave Massive MIMO with Lens Antenna Arrays
- Cost Efficiency Optimization of 5G Wireless Backhaul Networks
- Channel aware sparse transmission for ultra low-latency communications in TDD systems
- Interference Management in UAV-assisted Integrated Access and Backhaul Cellular Networks
- 5G Ultra-dense networks with non-uniform Distributed Users
- Power Minimization for Wireless Backhaul Based Ultra-Dense Cache-enabled C-RAN
- A Novel Transmission Policy for Intelligent Reflecting Surface Assisted Wireless Powered Sensor Networks