BATTALION / SPATIAL STUDIES

Energy, in layers.

Two views of the infrastructure connecting storage, power conversion, and compute.

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01 / THE CAMPUS

Individual bays.
A connected campus.

Six data hall bays each connect to a distributed battery energy storage system (BESS) sub-block through medium-voltage feeders. An energy management system (EMS) coordinates the storage blocks and site equipment.

Six bays / distributed storage

AI data center campus

AI infrastructure, bay by bayA large data hall divided into six numbered bays. Each bay is paired with a dedicated illustrated DC block containing battery storage and conversion equipment. Navy routes show individual block-to-bay feeds. A separate magenta network shows Battalion EMS coordination across all six blocks. The campus also contains a utility connection, substation, cooling equipment, and an operations building. The illustration slowly highlights each bay and its matching block in turn. This is a conceptual illustration, not an electrical design.Bay 01 and DC block 01BAY 01DC BLOCK 01Bay 02 and DC block 02BAY 02DC BLOCK 02Bay 03 and DC block 03BAY 03DC BLOCK 03Bay 04 and DC block 04BAY 04DC BLOCK 04Bay 05 and DC block 05BAY 05DC BLOCK 05Bay 06 and DC block 06BAY 06DC BLOCK 06UTILITY CONNECTIONONE DATA HALL. SIX DISTINCT BAYS.Repeated power blocks. Coordinated as a campus.BATTALION EMSSite-wide coordinationDEDICATED DC BLOCKSEach block serves its corresponding bay
  1. Utility and substationCampus connection
  2. Medium-voltage loopsRing switchgear and feeders
  3. BESS sub-blocksOne storage block per feeder
  4. Data hall baysOne hall, six bays
  5. EMS coordinationA connected view of the site

Static illustration

Power pathEMS coordinationConceptual arrangement

  1. Utility and substation. Campus connection.
  2. Medium-voltage loops. Ring switchgear and feeders.
  3. BESS sub-blocks. One storage block per feeder.
  4. Data hall bays. One hall, six bays.
  5. EMS coordination. A connected view of the site.

02 / THE POWER BLOCK

Follow the power.
See each connection.

This medium-voltage uninterruptible power supply (UPS) block connects a ring main unit (RMU), grid-side power conversion system (PCS), DC bus and battery, and load-side PCS in a dual-conversion path. A static transfer switch (STS) provides an optional connection to a backup bus, with auxiliary power and controls alongside the block.

Dual conversion / distributed storage

Medium-voltage UPS block

Medium-voltage UPS blockRing switchgear connects to grid-side power conversion, a DC bus and battery, load-side power conversion, and load switchgear. A dashed optional path connects a static transfer switch to a backup bus. Controls and auxiliary power sit alongside the power path.01Ring main unitwith integrated auto bypass02Grid PCS03DC bus and battery04Load PCS and load bus05Static transferto the reserve block, N+106Controls and auxiliary powerDUAL CONVERSION / CONCEPTUAL ARRANGEMENT
  1. Grid PCSRing switchgear at the input
  2. DC bus and batteryA shared DC connection
  3. Load PCSConversion to the load bus
  4. Static transfer to backup busOptional path through STS
  5. ControlsControl enclosure and auxiliary power

Static illustration

Power pathEMS coordinationOptional pathConceptual arrangement

  1. Grid PCS. Ring switchgear at the input.
  2. DC bus and battery. A shared DC connection.
  3. Load PCS. Conversion to the load bus.
  4. Static transfer to backup bus. Optional path through STS.
  5. Controls. Control enclosure and auxiliary power.

Conceptual architecture. Equipment classes and connections are shown for discussion.

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