Conference Tracks Topics

Note: The topics listed under each track are indicative and not limited to the areas mentioned below. Authors are encouraged to submit their papers to the track most relevant to their work. The Track Chair/TPC reserves the right to transfer a paper to another track, if deemed appropriate.

Tracks
Topics
Track 1 - Smart Communication and Networking Technologies
  • Beyond 5G, 6G, and Future Wireless Networks
  • Wireless Access, Core Network Architectures, and Protocol Design
  • Optical, Satellite, UAV, and Non-Terrestrial Communication Networks
  • Resource Allocation, QoS, and Network Performance Optimization
  • Communication Network Security, Privacy, and Cryptography
  • Green, Sustainable, and Energy-Efficient Communication Networks
  • Integrated Sensing and Communication (ISAC) Technologies: Signal Processing, Optimization, and Applications
  • AI-Enabled Networking: Towards Intelligent, Autonomous, and Sustainable Communication Systems
  • Resource Allocation and Intelligent Network Optimization for Beyond-5G and 6G Networks
  • 5G and Beyond Agentic Communication
  • Integrated Sensing and Communication (ISAC) Technologies: Signal Processing, Optimization, and Applications
  • AI-Driven Optimization and Resource Management for 6G Wireless Systems
  • Edge AI, Computer Vision and Secure Wireless Technologies for Future Smart Systems
  • High Speed Transmissions for Future Communication Networks
  • Multiple Access and AI in Next Generation Wireless Technology
  • Resource Allocation and Intelligent Network Optimization for Beyond-5G and 6G Networks
 
 
Track 2 - Quantum Technologies and Photonic Systems
  • Quantum Communication and Quantum Key Distribution (QKD)
  • Quantum Networking and Quantum Internet Architectures.
  • Photonic Integrated Circuits and Optical Interconnects
  • Fiber-Optic and Free-Space Optical Communication Systems
  • Quantum Sensing, Imaging, and Metrology
  • Plasmonics, Nanophotonics, and Integrated Quantum Photonic Devices
  • Metaphotonics
  • Quantum Photonics and Optical Sensor Technologies
  • Visible Light Communications
Track 3 - Advances in Computer Engineering and Intelligent Systems
  • Software Engineering, Architecture, Testing, and Quality Assurance.
  • Distributed Systems, Cloud Computing, and Scalable Platforms
  • Algorithms, Optimization, and Computational Intelligence
  • Human-Computer Interaction and Intelligent Interfaces
  • Big Data, Data Mining, and Knowledge Discovery
  • Deep Learning, Reinforcement Learning, and Generative AI
  • Foundation Models, Large Language Models, and Multimodal AI
  • Explainable, Trustworthy, and Responsible AI
  • Low-Power Memelement Circuits for Neuromorphic Computing, Intelligent Memory, and Adaptive Learning Applications
  • Advances in Computer Engineering and Intelligent Systems
  • AI-Driven Computer Engineering and Smart Computing Systems
  • Large and Vision-Language Models and Multimodal Intelligent Systems
  • Emerging Trends and Innovations in Intelligent Systems, Computer Engineering and Data Analytics
  • Artificial Intelligence-Driven Multimedia Information Processing for Complex Decision Support Systems
  • Multimodal Foundation Models for Deepfake Detection, Synthetic Media Analysis, and Trustworthy AI
  • Responsible AI in Practice: Trustworthy, Sustainable, and Scalable Systems
  • Remote Sensing and AI for Precision Agriculture, Mining and Earth Monitoring
  • Next-Generation Intelligent Inference via Multimodal Sensor Fusion
  • Explainable, Federated and Secure AI for Next-Generation Healthcare, Agriculture and Smart Infrastructure
  • Intelligent Multimedia Security and Forensics for Digital Trust
  • AI, Internet of Robotic Things (IoRT), and Autonomous Systems for Smart Agriculture
  • AI for Early Disease Detection and Preventive Healthcare Sustainability
  • Sustainable Energy Solutions Using AI, Blockchain, and Digital Twin Technologies
  • Green AI and Sustainable Computing Technologies
  • xAI-driven vision and large language models (LLMs)
  • Large Language Models and Multimodal Intelligent Systems
  • Applied AI, Edge Intelligence, and Precision Technologies for Sustainable Systems
  • Generative AI, Digital Twins, and Intelligent Energy Markets
Track 4 - VLSI, Embedded Systems, and Next-Generation Computing
  • Low-Power and Energy-Efficient VLSI Design
  • FPGA, ASIC, SoC, and Heterogeneous Computing Architectures
  • System-on-Chip Design, Verification, Validation, and Testing
  • Embedded Systems and Real-Time Hardware Platforms
  • Hardware Accelerators and High-Performance Computing Architectures.
  • Hardware Security, Trust, and Reliable Computing
  • AI-Driven Healthcare Systems and Smart Electronic Circuit Design for Intelligent Sensing, Diagnostics, and Edge Computing
  • The semi-custom IC design flow for ASIC development using EDA tools typically follows the complete RTL-to-GDSII methodology.
  • Noise Figure Optimization and Harmonic Engineering in GaN MMIC Amplifiers for 5G
  • Low-Power Memelement Circuits for Neuromorphic Computing, Intelligent Memory, and Adaptive Learning Applications
  • AI driven Healthcare Systems and smart circuit design
Track 5 - Signal Processing, Bio Medical and Multimedia Systems
  • Advanced Signal Processing and Adaptive Filtering
  • Statistical Signal Analysis and Detection/Estimation
  • Biomedical, Genomic, and Healthcare Signal Processing
  • Speech and Audio Signal Processing.
  • Image, Video, and Multimedia Processing.
  • Medical Imaging, Computer Vision, and Pattern Recognition
  • Smart Signal Processing and Multimedia Analytics for Healthcare, Environmental Monitoring and Earth Observation
  • Biomedical Signal Processing and Computational Intelligence for Smart Healthcare
  • AI-assisted Biomedical Signal Processing and Intelligent Healthcare Systems
  • Acoustic and Biomedical Signal Processing: Statistical to Deep Learning-Based Approaches
  • Application of AI and machine learning in biomedical image and signal processing
  • Deep Learning in Biomedical Signal and Image Analysis
  • AI,ML and Data Science in Medical Imaging
  • AI Enabled Healthcare Data Analytics - The future Trends
  • MEG-Based Detection of Major Depressive Disorder with Subject-Aware Cross-Validation
Track 6 - Sustainable Energy, Power Electronics, and Smart Grids
  • Renewable Energy Integration and Distributed Generation
  • Microgrids and Smart Grid Technologies
  • Power Electronics for Energy Conversion and Control
  • Energy Storage Systems and Battery Management
  • Electric Vehicles and Charging Infrastructure
  • Power Quality, Protection, Stability, and Grid Resilience
  • Sustainable and Intelligent Energy Systems: Shaping the Future of Power
  • Applied AI, Edge Intelligence, and Precision Technologies for Sustainable Systems
  • AI-Enabled Smart and Secure Power & Energy Systems
  • Emerging Solar Photovoltaic Technologies and Energy Storage Integration for Sustainable and Intelligent Power Systems
  • Emerging Technologies and Smart Solutions for Solar Energy Systems
  • Power Electronics and Energy Systems for Electric Mobility, Smart Charging, and Grid Integration
  • Smart and Sustainable Power Systems: Nanomaterials, High-Voltage Engineering, and Emerging Technologies
  • Fractional order modeling and control of power converter
  • EV Infrastructure: Smart, Connected, Sustainable
  • Next Generation Renewable Energy and Electric Vehicle Technologies: Charging, Powertrains, and Intelligent Control
  • Next-Generation Smart Grids for Sustainable and Resilient Energy Systems
  • Data-Driven Optimization for Net-Zero Power Systems: Renewables, Storage, and Electric Mobility
  • Integrated Smart and Renewable Energy Systems for Resilient Power Networks
  • Emerging Solar Photovoltaic Technologies and Energy Storage Integration for Sustainable and Intelligent Power Systems
  • Motors for Electric Vehicles: Emergence of rare earth permanent magnets free motors
  • Electric Vehicles and Intelligent Transport Systems
  • Next-Generation Power Electronics and Energy Systems for Electric Mobility, Smart Charging, and Grid Integration
  • EV Infrastructure: Smart, Connected, Sustainable
  • Electric Mobility and Charging Infrastructure
  • Sustainable Energy, Power Electronics, and Smart Grids
  • Renewable and Sustainable Energy
  • Intelligent Fault Diagnosis and Monitoring in Digital Power Systems
  • Sustainable Power Systems: Nanomaterials, High-Voltage Engineering, and Intelligent Grids
  • E-Mobilty-Challenges-Remedies
  • Energy Efficiency, Resilency, and Sustainability
  • Power Electronics for Hydrogen Systems and Microgrid Integration
Track 7 - Cyber-Physical Systems, Security, and IoT Applications
  • Architectures and Design of Cyber-Physical Systems
  • Internet of Things (IoT) Systems and Applications
  • Industrial IoT and Industry 4.0 Systems
  • Real-Time, Safety-Critical, and Embedded Networked Systems
  • Cybersecurity, Trust, Privacy, and Resilience in CPS and IoT
  • Digital Twins, Monitoring, and Autonomous CPS Applications
  • Cyber-Physical Systems, Security, and IoT Applications
  • Cyber-Physical Systems and Secure IoT Technologies for Next-Generation Smart Environments
  • Resilient, Secure, and Intelligent Cyber-Physical and IoT Systems for Sustainable Smart Grids
  • Intelligent Systems and Emerging Technologies: Advances in AI/ML, Computer Vision, IoT, and Cyber Security
  • Generative AI and Explainable Intelligence for Smart Grid Cyber-Physical Systems
Track 8 - Advanced Materials and Emerging Devices
  • 2D Materials, Nanostructures, and Thin-Film Technologies
  • Flexible, Wearable, and Bio-Integrated Electronics
  • Semiconductor Materials, Devices, and Fabrication
  • Spintronic, Memristive, and Beyond-CMOS Devices
  • MEMS/NEMS and Micro/Nano-System Technologies
  • Materials for Energy Harvesting, Storage, and Advanced Sensing
  • Advanced Functional Materials, Smart Sensors and Innovative Healthcare Technologies
  • In-situ Probing of Electronic Structure and Dynamic Interfaces in Functional Materials
  • Advanced Functional Materials, Smart Sensors and Innovative Healthcare Technologies
Track 9 - Antenna Design, Metamaterials, and Microwave Engineering
  • Antenna Design, Arrays, and MIMO Systems
  • Beamforming and Reconfigurable Antenna Systems
  • Metamaterials, Metasurfaces, and Reconfigurable Intelligent Surfaces
  • Microwave, Millimeter-Wave, and Terahertz Devices
  • Electromagnetic Modeling, Simulation, and Computational Techniques
  • RF Measurement, Over-the-Air Testing, and Calibration
  • Electromagnetic Suspension in Real-life Applications
  • Magnetic Levitation
Track 10 - Robotics, Control, and Mechatronics Systems
  • Classical, Intelligent, and Adaptive Control Systems
  • Robotics and Autonomous Systems
  • Mobile Robots, UAVs, and Swarm Robotics
  • Human-Robot Interaction and Collaborative Robotics
  • Navigation, Localization, Perception, and Sensor Fusion
  • Mechatronic System Design, Modeling, and Integration
  • Advanced optical materials for point of use sensor design
  • Guidance, Navigation, and Control for Autonomous Air, Ground, and Marine Vehicles
  • Frontiers in Fractional-Order Dynamics: Filters, Oscillators and Chaos
  • Robotics, Control, and Mechatronics Systems

32nd National Conference on
Liquid Crystals (NCLC 2025)