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NHN Cloud's Multi-Hypervisor Tibero TAC Deployment Elevates Public Sector High-Availability Storage

NHN Cloud has announced the successful validation and deployment of Tibero Active Cluster (TAC) within a multi-hypervisor cloud environment, specifically in Daegu's public-private partnership (PPP) cloud. This initiative, undertaken in collaboration with TmaxTibero, the developer of TAC, marks a significant step towards enabling critical public information systems to operate with high availability in a cloud setting. The validation focused comprehensively on core operational elements, including availability, network, and storage performance. This development is particularly significant for organizations, especially in the public sector, that have been hesitant to migrate highly available, mission-critical database systems to the cloud due to concerns about stability and performance parity with on-premises deployments. The ability to run an active-active clustering solution like Tibero TAC across multiple hypervisor nodes ensures that even if one hypervisor fails, the database service remains uninterrupted. This directly translates to enhanced service continuity and disaster recovery capabilities, which are paramount for government services and other essential operations. For DevOps teams, this means greater confidence in deploying stateful applications requiring robust database backends in cloud-native architectures, reducing the operational overhead associated with managing complex high-availability setups manually. This move by NHN Cloud fits within a broader, well-established trend in cloud computing: the continuous effort to bridge the gap between traditional enterprise workload requirements and cloud-native capabilities. As cloud adoption expands, there's increasing demand for existing systems that require high stability to also take advantage of the cloud's flexibility and scalability. The validation of TAC in a multi-hypervisor environment directly addresses this by replicating the redundancy and fault tolerance typically found in on-premises clustered database systems within a virtualized cloud infrastructure. Technologies like Single Root I/O Virtualization (SR-IOV), which NHN Cloud applied to boost network performance for TAC, are crucial enablers in this trend, allowing virtualized environments to achieve near bare-metal performance for demanding applications. This mirrors similar efforts by other major cloud providers to optimize their platforms for high-performance databases and enterprise applications, often involving specialized networking and storage solutions to guarantee SLAs. In practice, this means that public sector entities and enterprises can now more confidently explore migrating their most sensitive and high-availability database workloads to NHN Cloud. Practitioners should evaluate their existing on-premises TAC deployments and assess the feasibility and benefits of transitioning to this validated multi-hypervisor cloud setup. Key considerations will include network latency, data migration strategies, and ensuring that their cloud-native observability and management tools can effectively monitor such a specialized database configuration. This also sets a precedent for other cloud providers to demonstrate similar levels of high-availability support for enterprise database solutions, pushing the envelope for what's considered achievable in public cloud environments. Organizations looking to modernize their legacy database infrastructure while maintaining strict uptime requirements should closely watch the performance metrics and case studies emerging from this deployment.
#cloud storage#high availability#database#public cloud#storage performance#devops
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