Engineering
Multiple-Input Multiple-Output
100%
Limited Feedback
69%
Multiuser
44%
Spectral Efficiency
39%
Broadcast Channel
39%
Cellular Network
35%
Analog-to-Digital Converter
31%
Feedback Bit
28%
Basestation
27%
Output System
23%
Reinforcement Learning
21%
Beamforming
20%
Quantization (Signal Processing)
20%
Simulation Result
18%
Channel Quality
17%
Channel State Information
14%
Diversity Gain
13%
Signal-to-Noise Ratio
12%
Vector Quantization
11%
Orthogonal Frequency Division Multiple Access
10%
Point Process
10%
Metrics
10%
Antenna
9%
Multiple Receive Antenna
9%
Transmissions
8%
Input Multiple
8%
Optimisation Problem
8%
Achievable Rate
7%
System Parameter
7%
Power Allocation
6%
Multiple Antenna
6%
Load Feedback
6%
Multiple Access
6%
Single User
6%
Granularity
6%
Performance Analysis
5%
Antenna System
5%
Demonstrates
5%
Rayleigh Fading Channel
5%
Frequency Division Multiple Access
5%
Deep Neural Network
5%
Optimal Power Allocation
5%
Non-Orthogonal Multiple Access
5%
Feedforward
5%
Analytical Result
5%
Negative Value
5%
Pathloss Exponent
5%
Systems Analysis
5%
Additive White Gaussian Noise
5%
Assuming
5%
Computer Science
MIMO Systems
37%
Analog-to-Digital Converter
24%
sum rate
22%
Broadcast Channel
16%
Quantization (Signal Processing)
14%
Approximation (Algorithm)
12%
MIMO
11%
Frequency Division Multiple Access
10%
Reinforcement Learning
10%
Massive MIMO
10%
Vector Quantization
9%
Spectral Efficiency
9%
multiple-input-multiple-output
8%
Performance Analysis
8%
multiple input multiple output system
7%
Achievable Rate
7%
Diversity Gain
6%
Cellular Network
5%
MIMO-OFDM Dual-Functional Radar-Communication Systems
5%
multi-user MIMO
5%
single carrier
5%
Multiuser Detection
5%
Performance Bound
5%
rayleigh-fading channel
5%
Channel Quality
5%
decode-and-forward
5%
Quality Indicator
5%
Low Sampling Rate
5%
Non-Orthogonal Multiple Access
5%
Regularization Parameter
5%
Composite Function
5%
System Analysis
5%
Additive White Gaussian Noise
5%