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International Conference on IoT, Blockchain & Cloud Computing (IBCOM) 2026

Type Conference
Organization AIRCC Publishing Corporation
Event Format Physical
Size 51 - 100 approximate delegates
Registration Not Free
SPEAKING: FREE-TO-SPEAK

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Conference Description

Key Takeaways

  • International academic conference exploring the convergence of IoT, blockchain and cloud computing technologies
  • Addresses critical challenges in distributed systems security, scalability and interoperability
  • Covers emerging topics including zero trust security, post-quantum cryptography, federated learning and Web3
  • Hybrid format with presentations available both in-person in Copenhagen and online
  • Designed for researchers, engineers, security architects and technology leaders across IT, telecommunications and manufacturing sectors

Introduction

The 7th International Conference on IoT, Blockchain & Cloud Computing (IBCOM 2026) brings together researchers, practitioners and industry experts to examine how three foundational technologies are reshaping distributed computing. Taking place in Copenhagen, Denmark, the conference arrives at a moment when organisations across sectors are grappling with the practical challenges of deploying integrated systems that must be simultaneously secure, scalable and intelligent. As enterprises move beyond isolated implementations toward interconnected platforms spanning edge devices, decentralised networks and cloud infrastructure, the need for rigorous research and cross-domain collaboration has become increasingly urgent.

About IBCOM 2026

Now in its seventh year, IBCOM has established itself as a forum for sharing original research, case studies and industrial experiences at the intersection of IoT, blockchain and cloud computing. The conference accepts submissions ranging from theoretical methodology papers to comprehensive surveys documenting real-world implementations. Proceedings are published through AIRCC in the Computer Science & Information Technology series, providing authors with formal academic recognition for their contributions.

The hybrid format accommodates both in-person attendance in Copenhagen and virtual participation, enabling researchers and practitioners worldwide to engage with presented work regardless of travel constraints.

Technical Focus Areas

The conference programme spans the full stack of modern distributed systems, from device-level architectures through to cloud-native platforms. IoT-focused sessions examine next-generation architectures designed for 5G and emerging 6G networks, alongside the edge–fog–cloud continuum that determines where computation occurs across distributed infrastructure. The application of artificial intelligence to IoT analytics and the development of digital twin technologies represent areas where theoretical advances are rapidly translating into operational deployments.

Blockchain coverage extends beyond protocol fundamentals to address persistent challenges around scalability and interoperability that have constrained enterprise adoption. Smart contract security, decentralised storage systems including IPFS and Filecoin, and the broader Web3 ecosystem feature prominently. Post-quantum cryptography receives particular attention as organisations begin preparing blockchain implementations for a future where current cryptographic assumptions may no longer hold.

Cloud computing topics reflect the ongoing shift toward cloud-native architectures built on platforms such as Kubernetes. Serverless computing, confidential computing for sensitive workloads, and observability practices for complex distributed systems all feature in the programme. The co-design of cloud, edge and AI systems acknowledges that optimising these layers in isolation increasingly fails to deliver required performance and efficiency outcomes.

Security and Trust in Distributed Environments

Security considerations thread through virtually every conference topic. Zero trust approaches to IoT security reflect growing recognition that perimeter-based models cannot adequately protect environments where devices, data and processing are distributed across organisational boundaries. Federated learning techniques enable machine learning across distributed datasets without centralising sensitive information, addressing both privacy requirements and data sovereignty concerns that complicate cross-border deployments.

The integration of blockchain with IoT and cloud systems introduces both opportunities and complexities for secure data sharing. Establishing trust across heterogeneous platforms while maintaining performance at scale remains an active research challenge with significant practical implications for industrial IoT deployments in manufacturing, logistics and critical infrastructure.

Who Should Attend

IBCOM 2026 serves a technically sophisticated audience spanning academia and industry. Academic researchers and professors working on distributed systems, security and emerging network technologies will find relevant peer-reviewed work and collaboration opportunities. Industry practitioners including cloud engineers, security architects and solution architects can engage with research addressing operational challenges they encounter in production environments. Technology strategists and senior leaders such as CTOs and CIOs may find value in understanding where research directions are heading and how emerging capabilities might inform infrastructure decisions.

Sectors with particular relevance include telecommunications, manufacturing, logistics and digital infrastructure, though the foundational nature of the technologies under discussion means insights often transfer across industry boundaries.

Advancing Integrated Distributed Systems

The conference reflects a broader recognition that IoT, blockchain and cloud computing can no longer be treated as separate domains. Smart environments, digital economies and large-scale intelligent infrastructure increasingly depend on platforms that integrate all three. IBCOM 2026 provides a venue for advancing both the theoretical foundations and practical implementation knowledge required to build these next-generation systems.