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Case study · Power and Grid

The next-generationenergy internet.

A large municipal power utility operating and modernizing a complex electricity grid across a major metropolitan area. It manages a rapidly growing population of grid devices, applications and energy IoT systems under strict requirements for availability, safety and real-time responsiveness. As grid complexity rose and electricity markets opened to competition, manual operations and package-based deployment became a constraint on both stability and innovation.

Constraints and answers

A grid that cannot pause

One platform, and the old systems still on it

01

More devices, more complexity

The growth in connected power system devices required unified and standardized management to hold consistent operation and control across the energy platform.

Answer

01

Unified cloud management

A cloud-native platform centrally manages and schedules resources, improving scalability and taking pressure off operations.

02

Manual operations introducing instability

Reliance on manual operational processes increased system instability and created strong demand for automation across grid and energy platforms.

Answer

02

High-availability platform and applications

Distributed architecture with automatic scheduling holds platform stability and business continuity through component failures.

03

Package-based deployment that no longer scaled

Package-based deployment was inefficient and put growing pressure on grid platforms as application scale increased.

Answer

03

Intelligent operations

Automation simplified application lifecycle management, improving efficiency and reducing operational cost.

04

Open electricity markets demanding faster innovation

Market liberalization increased the need for faster innovation and more frequent application updates across energy systems.

Answer

04

Bimodal IT support

Support for both new and existing business models allows smooth system upgrades alongside continuous innovation.

New releases land while the grid stays up, and a failed component stops nothing.

The results

43% more traffic capacity, across 70 platform nodes.

43%
TRAFFIC CAPACITY INCREASE
Headroom added without adding operational risk.
70+
PLATFORM NODES DEPLOYED
Deployed across dozens of clusters under one operating model.
SMART GRID AND POWER IOT SYSTEM
A resilient smart grid and power IoT system now in operation.

Capacity, resilience and a foundation the next decade of grid work can sit on.

The stack

What was deployed

The cloud-native platform for application orchestration, service integration, DevOps enablement, high availability and lifecycle management across grid applications.

The distributed infrastructure foundation for compute, storage, networking, load balancing and reliable operation of large-scale smart grid workloads.

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