Energy Firms Launched New Data Center Power Strategies
Three corporate collaborations have moved to integrate battery storage into data infrastructure to handle rising AI demand.
Updated on Oct. 1, 2026 in Data Centers

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Three separate partnerships have been announced to embed advanced battery and power management systems into energy and data center infrastructure. These initiatives, spanning North America and the United States, aim to support the intensifying power requirements of modern high-performance computing.
Why it matters
The massive energy draw from AI and data center workloads has prompted a rapid shift toward integrated, resilient power architectures. By localizing energy storage and conversion, these firms aim to buffer sudden demand spikes that threaten grid stability.
The TerraFlow and DG Matrix initiative utilizes vanadium redox flow batteries—a long-duration energy storage system—paired with solid-state transformers to regulate server power. These systems are designed to manage the extreme, rapid power load variations inherent in high-performance compute environments.
The players
Helix Digital Infrastructure
An investment strategy formed by KKR focused on developing infrastructure for digital scale and energy efficiency.
Samsung
A global electronics and semiconductor conglomerate now scaling its capital footprint in digital infrastructure and energy cooling.
Hitachi Energy
A power technology firm specializing in grid integration, inverter hardware, and advanced control systems for energy storage.
The details
Linxon will function as the engineering, procurement, and construction integrator, working with Hitachi Energy to deploy inverters and control systems alongside FTC Solar hardware for tracking and racking. Simultaneously, TerraFlow and DG Matrix are field-testing an integrated architecture that combines uninterruptible power systems with high-efficiency transformers. These technologies serve as a buffer between fluctuating utility power and the stringent, low-latency requirements of data center hardware.
Timeline
September 28, 2026: Samsung announced a US$1 billion capital commitment to Helix Digital Infrastructure.
September 28, 2026: TerraFlow and DG Matrix announced the deployment of their integrated energy architecture.
September 29, 2026: Linxon, Hitachi Energy, and FTC Solar announced a memorandum of understanding for energy projects.
The Tech Race
These projects represent an effort to stabilize the power-hungry data center sector against the constraints of aging utility grids. This initiative directly competes with alternative approaches like modular small-scale reactors and on-site generation to maintain continuous uptime for AI workloads.
These developments will primarily influence large-scale cloud providers and enterprise data center operators by providing more resilient power delivery. While direct impact on local electricity prices or stability is not currently quantified, these technologies seek to prevent the localized outages associated with peak AI compute demand.
The takeaway
The industry is moving toward proprietary, integrated energy storage architectures to decouple high-performance computing from grid volatility. Watch for the initial performance benchmarks of the Linxon-Hitachi-FTC Solar pipeline to gauge the reliability of these integrated setups.
Further reading
For broader trends in infrastructure efficiency, see the latest analysis in Data Centers.
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