About the Conference: Charting the Future

The International Conference on Electronics, Communication, Computing, Image Processing, and Industry 6.0 (ECCI6) is more than just an academic event; it is a confluence of the brightest minds poised to redefine our technological future. Our primary objective is to create a vibrant, interdisciplinary forum where researchers, industry leaders, and practitioners can present, discuss, and challenge the innovations that will underpin the next generation of intelligent systems.

At its core, ECCI6 is dedicated to bridging the gap between theoretical research and real-world application. We aim to foster robust collaborations that translate laboratory breakthroughs into tangible industrial solutions. The conference places a special emphasis on Industry 6.0, exploring the symbiotic relationship between human ingenuity and advanced artificial intelligence. We will delve into how this new paradigm promotes hyper-personalized products, sustainable manufacturing through bio-integration, and ethical, human-centric automation. By bringing together diverse perspectives, ECCI6 seeks to catalyze the development of systems that are not only autonomous and efficient but also transparent, explainable, and aligned with societal values.

Conference Tracks

ECCI6 invites original research in the following 5 tracks. Click on a card to explore the specific topics.

Research Tracks Overview

ECCI6 features 5 comprehensive research tracks covering the latest developments in electronics, communication, computing, image processing, and Industry 6.0 technologies.

5 Interactive Tracks
80+ Total Topics
Electronics Track

Track 1: Electronics

VLSI, semiconductors, sustainable electronics, and AI-optimized hardware.

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  • Flexible and Printed Electronics
  • AI-Optimized Hardware and Edge AI
  • 2D Materials and Advanced Semiconductors
  • Energy-Efficient and Sustainable Electronics
  • AI-Driven VLSI Design Automation
  • Low-Power VLSI Design
  • Advanced Semiconductor Materials
  • 3D IC and Chiplet Architectures
  • VLSI for IoT and Edge Devices
  • Security-First VLSI Design
  • VLSI in Biomedical Applications
  • Quantum and Neuromorphic VLSI
  • FinFET and GAAFET Technologies
  • VLSI for 5G and High-Speed Communication
  • Biomedical Electronics
Communication Track

Track 2: Communication

Next-gen networks from 5G/6G and satellites to quantum and optical communication.

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  • Advanced IoT & mMTC
  • AI-Driven Networks
  • Satellite Mega-Constellations & 5G NTN
  • Quantum Communication & Cryptography
  • Green & Energy-Efficient Networks
  • Terahertz Communication
  • System-on-Chip (SoC)
  • 5G Technology and Beyond
  • Silicon Photonics
  • 6G Communication Networks
  • Software-Defined Networking (SDN)
  • Network Function Virtualization (NFV)
  • Edge & Fog Networking
  • Zero Trust architecture
  • AI-driven Intrusion Detection (IDS)
  • Blockchain for Secure Protocols
  • Federated Learning in IoT Networks
  • Ultra-Dense Wireless Networks
  • Device-to-Device (D2D) Communication
  • Visible Light Communication (VLC)
  • Cognitive Radio Networks
  • Self-Organizing Networks (SONs)
  • Digital Twins in Communication
  • AI-enhanced Routing Protocols
  • Predictive QoS Management
  • Resilient Remote Communication
  • Photonic Integrated Circuits (PICs)
  • Free-Space Optical (FSO)
Computing Track

Track 3: Computing

AI/ML, quantum computing, security, and advanced human-computer interfaces.

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  • Explainable AI (XAI)
  • Federated Learning
  • Quantum Machine Learning
  • Post-Quantum Cryptography
  • Zero-Trust Security Models
  • AI-Driven Intrusion Detection
  • Serverless Architectures
  • Edge, Cloud and Fog Computing
  • Computational Genomics
  • Digital Twins in Healthcare
  • AI for Mental Health Monitoring
  • Neurosymbolic AI
  • Deepfake detection
  • Ethical data mining
  • IoT forensics
  • Neuromorphic chips
  • DevOps automation
  • Low-code platforms
  • AI for genomics
  • Wearable computing
  • AR/VR interfaces
  • Swarm robotics
  • Haptic feedback systems
  • AI-driven UX design
  • Social robotics
Image Processing Track

Track 4: Image Processing

Advanced image analysis, computer vision, and AI-driven visual intelligence.

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  • Image Restoration with Deep Learning
  • Generative Adversarial Networks (GANs)
  • Explainable AI in Image Processing
  • Tumor Detection & Classification
  • MRI & CT Image Enhancement
  • Fusion of Multi-modal Medical Images
  • Image Processing for Autonomous Vehicles
  • Real-Time Video Analytics
  • Satellite Image Analysis
  • Hyperspectral Image Processing
  • Quantum Image Processing
  • Ethical & Fair Image Processing
  • Hardware-Efficient Image Processing
  • Datasets and Benchmarks
  • Document Analysis & Processing
  • Image & Video Quality Models
  • Image Processing for Public Health
Industry 6.0 Track

Track 5: Industry 6.0

Smart manufacturing, human-robot collaboration, and sustainable industrial systems.

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  • Advanced AI & Machine Learning
  • Human-Robot Collaboration (HRC)
  • Cognitive Computing & Interfaces
  • Industrial Internet of Things (IIoT)
  • Digital Twins & Simulation
  • Blockchain for Supply Chains
  • Augmented & Virtual Reality (AR/VR)
  • Sustainable Manufacturing Systems