Call for papers/Topics
All Abstracts, Reviews, short articles, Full articles, Posters are welcomed related with any of the following research fields:
1. Independent Core Topics & Subtopics
Advanced Computing & Architecture
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Quantum Computing: Quantum algorithms, qubit technology, quantum cryptography, fault-tolerant quantum systems, quantum annealing.
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Exascale & High-Performance Computing (HPC): Supercomputing architectures, massive parallel processing, cluster management, distributed memory networks.
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Edge & Fog Computing: Low-latency localized processing, distributed device orchestration, resource-constrained optimization, edge AI hardware.
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Neuromorphic Computing: Brain-inspired hardware architectures, spiking neural networks, non-von Neumann processing, memristor arrays.
Artificial Intelligence, Machine Learning & Data Systems
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Generative & Foundation Models: Multi-modal architectures, transformer models, prompt engineering, fine-tuning methodologies, alignment and safety techniques.
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Autonomous Systems & Robotics: Kinematics and motion planning, sensor fusion, spatial awareness, human-robot interaction, swarm intelligence.
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Computer Vision & Perception: Real-time object tracking, 3D reconstruction, visual SLAM (Simultaneous Localization and Mapping), biometric processing.
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Advanced Data Architectures: Graph databases, real-time streaming engines, federated data systems, high-dimensional vector search engines.
Communications, Networking & Infrastructure
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Next-Generation Wireless (6G & Beyond): Terahertz communication, intelligent reflecting surfaces, non-terrestrial networks (satellite-to-ground integration).
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Optical & Photonic Networks: Silicon photonics, laser-based inter-satellite links, co-packaged optics, ultra-fast data transmission.
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Software-Defined Infrastructure: Software-defined networking (SDN), network function virtualization (NFV), intent-based networking, zero-trust network architecture.
Advanced Engineering & Physical Systems
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Additive Manufacturing & Smart Materials: 3D/4D printing, metamaterials, self-healing polymers, shape-memory alloys, high-entropy alloys.
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Nanotechnology & Microelectronics: Semiconductor fabrication beyond 2nm, carbon nanotube electronics, microelectromechanical systems (MEMS), spintronics.
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Energy Systems & Storage: Solid-state battery technology, grid-scale energy storage, nuclear fusion engineering, smart grid automation.
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Bioengineering & Synthetic Biology: DNA computing, neural interfaces, biomimetic engineering, gene-editing platforms, lab-on-a-chip diagnostic systems.
Cybersecurity & Digital Trust
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Post-Quantum Cryptography (PQC): Lattice-based encryption, code-based cryptography, migration frameworks for legacy infrastructure.
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Zero Trust & Confidential Computing: Hardware-based Trusted Execution Environments (TEEs), secure multi-party computation, homomorphic encryption.
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Cyber-Physical System Security: Industrial control system protection, autonomous vehicle security protocols, IoT firmware security.
2. Interrelated & Cross-Disciplinary Domains
These topics emerge directly at the intersection of two or more of the core disciplines above:
AI-Accelerated Hardware & Silicon Design
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The Intersection: Artificial Intelligence + Nanotechnology & Semiconductor Architecture.
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Focus: Designing specialized microchips (GPUs, TPUs, NPUs) specifically optimized for matrix math and neural network workloads, while using AI algorithms to layout and optimize the physical circuits on the silicon wafer.
Neuromorphic Bio-Interfaces & Cybernetics
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The Intersection: Neuromorphic Computing + Bioengineering + Microelectronics.
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Focus: Direct brain-computer interfaces (BCIs) that use spike-based processing models matching biological neurons, creating seamless interfaces for prosthetics, neural repair, or direct cognitive enhancement.
Quantum Machine Learning & Encryption
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The Intersection: Quantum Computing + Artificial Intelligence + Cybersecurity.
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Focus: Using quantum processors to accelerate pattern recognition and machine learning tasks, while simultaneously developing quantum key distribution (QKD) and post-quantum encryption standards to protect machine learning models and sensitive data.
Autonomous Energy Systems & Smart Grids
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The Intersection: Energy Systems + Edge Computing + AI & Autonomous Systems.
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Focus: Deploying edge computing and real-time AI models across power grids to dynamically balance supply and demand, manage decentralized renewable energy sources, and prevent grid failure automatically.
Digital Twins & Cyber-Physical Systems
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The Intersection: Advanced Data Architectures + High-Performance Computing + Smart Materials/Sensors.
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Focus: Creating exact, real-time virtual simulations of physical assets (like jet engines, whole factories, or entire smart cities) to run predictive maintenance, stress tests, and optimizations in software before applying changes physically.
Distributed Autonomous Swarms
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The Intersection: Autonomous Systems + 6G Wireless Communication + Swarm Intelligence.
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Focus: Coordinating large fleets of physical drones, submersibles, or ground vehicles using ultra-low latency wireless networks, allowing them to make collective decisions without relying on a central command server





