Computer Science
Baseband Processing
100%
reconfigurable architecture
100%
Orthogonal Frequency Division Multiplexing
100%
Coarse-Grained Reconfigurable Array
100%
Hardware Platform
50%
Baseband Processor
33%
Reconfigurable Hardware
33%
Research Direction
16%
Processing System
16%
Potential Direction
16%
Processor Design
16%
Architecture Framework
16%
Time Requirement
16%
Characteristic Feature
16%
Potential Solution
16%
Design Complexity
16%
Energy Efficiency
16%
Information Technology
16%
High Reliability
16%
Hardware Device
16%
Dynamic Power Dissipation
16%
Massively Parallel Processing
16%
Processing Capability
16%
Multiplexing
16%
General Purpose Processor
16%
Computational Complexity
16%
Field Programmable Gate Arrays
16%
Application Specific Integrated Circuit
16%
Keyphrases
Coarse-grained Reconfigurable Architecture
100%
Baseband Processing
100%
Radio
100%
Orthogonal Time Frequency Space
100%
Hardware Platform
50%
Baseband Processor
33%
Processing Applications
33%
Traditional Architecture
16%
Emerging Communication Technology
16%
RISC-V
16%
Processing System
16%
Processor Design
16%
Real-time Requirements
16%
Architecture Framework
16%
High Energy
16%
Performance Efficiency
16%
New Research Directions
16%
Flexible Hardware
16%
Domain-specific Accelerators
16%
Existing Challenges
16%
Architectural Features
16%
All Levels
16%
High Performance
16%
Design Complexity
16%
Energy Efficiency
16%
Space Systems
16%
Space Division multiplexing
16%
Engineering
Orthogonal Frequency Division Multiplexing
100%
Reconfigurable Hardware
50%
Multiplexing
25%
Scale Space
25%
Orthogonal Multiple
25%
Computational Complexity
25%
Application Specific Integrated Circuit
25%
Space System
25%
Purpose Processor
25%
Dynamic Power Dissipation
25%
Field Programmable Gate Arrays
25%
Reconfigurability
25%
Prototype
25%
Switching Time
25%