Energy & Utilities
Resilient infrastructure for critical operations
Reliable, secure compute and networking for grid, field, and remote operations, with HPC for seismic and modeling workloads.

What you're up against
- ▸Deploying compute and networking that survives substations, wellheads, and remote field sites — extreme temperature swings, vibration, dust, and limited power where there's no climate-controlled IT closet
- ▸Bringing NERC CIP-covered grid and OT assets under continuous monitoring while keeping IT and operational-technology networks segmented so a corporate-side compromise can't reach control systems
- ▸Scaling seismic imaging, reservoir simulation, and grid power-flow modeling that outgrows general-purpose servers and demands GPU- and interconnect-dense HPC
- ▸Moving sensor and telemetry data from thousands of dispersed assets — turbines, transformers, meters, offshore platforms — into analytics without saturating constrained WAN links
- ▸Sustaining and refreshing infrastructure across a geographically dispersed fleet where physical site visits are slow, costly, and sometimes safety-restricted
How we deliver
- Hardened remote and field compute
- Critical-infrastructure security
- HPC for modeling and simulation
- Edge-to-cloud data pipelines
Built for the standards your mission requires
Frequently asked
Can your equipment run in substations and remote field conditions?
Yes. We specify environmentally-hardened, extended-temperature ProLiant edge platforms rated for substations, control rooms, wellheads, and remote field sites where there is no climate-controlled rack space. Builds account for vibration, power constraints, and remote-management needs so the gear runs reliably and can be administered without a truck roll.
How do you support NERC CIP and IT/OT segmentation?
We design configurations aligned to NERC CIP for BES Cyber Systems and segment OT from IT using HPE Aruba Networking role-based access and microsegmentation, mapped to IEC 62443 and NIST. You get documented baselines, hardened builds, and audit-ready evidence so a corporate-side compromise can't traverse into grid control systems.
Do you support seismic, reservoir, and grid-modeling HPC?
Yes. We size HPE Cray and GPU-accelerated ProLiant systems for seismic imaging, reservoir simulation, and large-scale power-flow modeling — the same class of supercomputing HPE delivers for 4D seismic workloads. We tune compute, high-speed interconnect, and parallel storage together so jobs that overwhelm general-purpose servers complete in workable timeframes.
How do you move field and sensor data to analytics without saturating WAN links?
We build edge-to-cloud pipelines: ruggedized ProLiant edge nodes run inference and filtering at the asset, so only meaningful data crosses the link to your core or HPE GreenLake environment. Aruba SD-WAN and secure connectivity tie thousands of dispersed sites — turbines, transformers, meters, platforms — back to central analytics efficiently.
How do you handle refresh and migration across a dispersed asset fleet?
We stage, image, and validate systems centrally, then phase rollouts to minimize costly and safety-restricted site visits. Critical control and monitoring workloads are migrated with tested cutover runbooks and remote management built in, so the fleet modernizes without disrupting grid or plant operations.
What procurement paths can utilities and public-power buyers use?
As an authorized HPE and HPE Aruba Networking partner, we sell TAA-compliant infrastructure through GSA, SAP/FAR channels, and GPC, and support cooperative and public-power buying. HPE GreenLake is available where utilities prefer pay-per-use economics over upfront capital, aligning spend to consumption.
Build your HPE bill of materials.
Send us the requirement, the project, or an existing quote to beat. We come back with a validated, TAA-compliant HPE configuration and a real price, often below list.
connect [at] getuniqcli.com · Chicago, IL