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IEEE CLOUD is the flagship conference dedicated to ingenious advances in cloud computing across all "Everything as a Service" (XaaS) paradigms. This includes modeling, developing, developing, publishing, monitoring, handling, operating, providing, and scaling XaaS offerings from the cloud to the edge. The conference is a prime worldwide forum for scientists, academics, organizations, market, and basic bodies to exchange the current advances in the state-of-the-art and practice of cloud computing, determine emerging research study subjects, and define the future of cloud computing.
Subjects of interest consist of however are not limited to the following: Cloud Architecture and Infrastructure Data center architectures Virtualization and multi-tenancy Cloud storage Cloud-native programming models (serverless, microservices, service mesh, and so on) Software-based networking technologies (SDN, NFV) Multi-cloud and cloud federation environments Personal and hybrid cloud environments Edge and Fog computing infrastructureCloud Management and Operation Performance tracking and optimization Fault tolerance, high accessibility, and dependability Resource allowance and scheduling Load balancing and automated scaling Cost optimization strategies DevOps, CI/CD, IaC and cloud automation Enhancing AI workloads on heterogeneous facilities Optimizing heterogeneous facilities for AI workloadsSustainable Cloud Computing Carbon footprint measurement for hardware and software systems Carbon-aware and grid-aware system management Sustainable data center style Sustainable software advancement practices for cloud services Energy-efficient service architectures Green cloud architectures and solutionsCloud Security and Personal privacy Trusted environments and No trust architectures Identity and access management, permission, and authentication Assurance, audit, accreditation, regulatory compliance Privacy-aware and cross-data center data managementCloud Computing in Emerging Technologies AI and ML in cloud environments Edge intelligence & AI analytics at the edge IoT cloud platforms Digital twins & metaverse Applications Quantum computing integration 5G/6G and cloud integration Blockchain in cloud servicesCloud Economics Methods for enterprise business transformation Cloud Service Level Agreements (SLAs) and Service Level Goals (SLOs) Economic and organization models for XaaS (consisting of RoI analysis) Economic designs for AI cloud deployments Adaptive prices methods Cross-cloud market mechanisms Last upgraded by Dou Sun in 2026-02-01.
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CLOUD 2025 was effectively held on September 25-30, 2025, in Hong Kong, China.
Cloud Computing has ended up being a scalable services consumption and shipment platform in the field of Providers Computing. The technical structures of Cloud Computing consist of Service-Oriented Architecture (SOA) and Virtualizations of software and hardware. The goal of Cloud Computing is to share resources among the cloud service consumers, cloud partners, and cloud suppliers in the cloud worth chain.
SaaS focusing on middleware as a service, or conventional CRM as a service), application cloud (e.g., Application as a Service, UML modeling tools as a service, social media as a service), and organization cloud (e.g., business procedure as a service). CLOUD 2026 is belongs to the Smart Computing Frontier (SCF).
Meanwhile, the First International Conference on Web Providers - Europe 2003 (ICWS-Europe 2003) was held in Germany in October 2003. ICWS-Europe '03 is an extended event of the 2003 International Conference on Web Solutions (ICWS 2003) in Europe. In 2004, ICWS-Europe was changed to the European Conference on Web Solutions (ECOWS), which was kept in Erfurt, Germany.
Cloud computing has been a technological experience in the business world for more than a minute, numerous may be questioning: What's new for 2026 and should you continue investing in it? We can say yes, you should continue purchasing it, and we'll describe why. Cloud platforms will integrate artificial intelligence and artificial intelligence abilities to automate operations (such as proactive tracking), process data in real time, and offer advanced predictive analytics.
More and more companies will embrace hybrid or multi-cloud architecturescombining public, private, and edge cloudsto prevent vendor lock-in and optimize expenses and performance. The future indicate seamless interconnectivity between suppliers through tools such as Anthos, Terraform, or Crossplane. The boundary between the centralized cloud and the edge is blurring: processing is moving closer to the data source to enhance latency and energy effectiveness.
The serverless design (pay-per-use without handling servers) will continue to broaden, specifically in microservices and event-driven applications. Confidential computing, which secures information even while it is being processed, will become standard for controlled or sensitive environments.
Cloud-native analytics with incorporated BI and native predictive analytics will allow faster data-driven choices. Although still in its early phases, vendors are anticipated to use Quantum-as-a-Service (QaaS) for complex problems in sectors such as finance, health care, and logistics, in addition to releasing quantum-resistant algorithms. Regulative and market pressure will drive service providers and users to prioritize energy-efficient data centers, using renewable resource, and practices such as GreenOps and FinOps to measure and reduce their carbon footprint.
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The cloud computing pattern has actually transformed life around the world by improving mobility and interaction. As one of the fastest-growing innovations, cloud computing is poised to exceed all others by 2026 Reputable sources reveal that business can conserve up to 64% on energy costs and decrease carbon emissions by 64% by adopting cloud services.
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