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Case study · Power and Grid

Smart grid,built cloud-native.

A large-scale electric power utility operating complex grid infrastructure, distributed devices and mission-critical applications across a metropolitan service area. Its operations span generation, transmission, distribution and real-time monitoring, and lean increasingly on connected devices, data platforms and digital services to hold grid stability and operational efficiency. As grid digitalization accelerated and device diversity grew, traditional deployment and operations models could not support the scale, automation or pace of innovation required.

Constraints and answers

More devices, more risk, and less room for manual work.

The platform that schedules centrally and recovers itself.

The constraints5
01

Device growth requiring unified management

Rapid growth in the number and diversity of grid-connected devices required unified and standardized management.

02

Traditional deployment models slowing grid systems

Traditional software deployment and operations models created operational pressure and reduced efficiency across grid systems.

03

Manual processes introducing error and instability

Manual processes introduced human error, which hurt system stability and reliability.

04

Existing platforms limiting the pace of iteration

Existing platforms struggled to support rapid business iteration and innovation across grid applications.

05

High availability required under distributed conditions

Grid operations required high availability, fault self-recovery, and continuous service under complex distributed conditions.

The answers4
01

Unified cloud-native resource management

A cloud-native platform centrally manages and schedules compute and application resources, improving scalability and taking operational pressure off grid workloads.

02

High-availability platform and applications

A distributed architecture with automatic scheduling and fault self-recovery holds platform stability and keeps grid operations running through component failures.

03

Intelligent operations and maintenance

Application lifecycle management was simplified through automation, improving operational efficiency while reducing manual intervention and cost.

04

Bimodal IT support for grid evolution

Support for both new and existing grid applications allows upgrades without interruption and continuous innovation, with legacy systems running stably alongside modern services.

Recovery is a property of the platform, not a manual step.

The results

43% more traffic capacity, 70 nodes, zero manual rollout.

43%
INCREASE IN TRAFFIC CAPACITY
Headroom added across grid platform workloads.
70
NODES DEPLOYED
Distributed, scalable grid operations across the platform.
RESILIENT SMART GRID AND POWER IOT SYSTEM
A stable, intelligent foundation for connected grid devices and digital energy services.

A grid platform is judged on the night nothing happens.

The stack

What was deployed

Supports intelligent analysis and optimization where required, enabling data-driven insight across grid and power IoT workloads.

The cloud-native operating platform for application orchestration, DevOps enablement, high availability and grid lifecycle management.

Delivers the distributed compute, storage and networking infrastructure required to carry large-scale smart grid workloads with reliability and resilience.

역량에 관한 노트

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