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SIRIUS
Home
People
Research
Communication theory
Electromagnetic information theory interface
Advanced material empowered communications
Machine learning empowered communications and advanced signal processing
Empowered Communications & Networking
Semantic communications
Communications for biomedical applications
Ultra-dense networking
Publications
Books
Conferences
Journals
Open Datasets
Patents
White Papers
Projects
In-Progress
Completed
Contact
News
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Communication theory
Key Research Areas & Activities
Signal Processing & Transmission / ReCEPTION Theory
Developing advanced modulation, coding, and error-correction techniques.
Studying waveform design for 5G/6G, optical, and satellite communications.
Optimizing signal detection and estimation in noisy environments.
Wireless & Mobile Communication Systems
Modeling and analyzing multi-antenna (MIMO) and massive MIMO systems.
Investigating ultra-reliable low-latency communication (URLLC) for IoT and industrial applications.
Designing energy-efficient protocols for next-generation wireless networks.
Information Theory & Network Coding
Studying fundamental limits of data compression, transmission, and encryption.
Exploring network information theory for distributed and cooperative communication.
Developing novel coding schemes for improved spectral efficiency.
System and
Network Architecture & Optimization
Designing scalable and adaptive protocols for software-defined networking (SDN) and network function virtualization (NFV).
Analyzing traffic patterns and resource allocation in cloud and edge computing.
Enhancing Quality of Service (QoS) and network resilience.
Security & Privacy in Telecommunications
Investigating physical-layer security for wireless networks.
Developing anti-jamming and anti-eavesdropping techniques.
Studying cryptographic methods for secure data transmission.
High Frequency Wireless Systems and Networks
mmWave/THz wireless systems
Optical wireless communications
Resource allocation in high-frequency ultra dense wireless networks