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Apex Power DistributionApexPower.ai

Intelligent Mimic

One system. Eight ways to read it.

A modern industrial HMI one-line, built to be understood by engineers and procurement alike. Switch between the one-line, the physical equipment, protection, controls, communications, sensors, data and AI analytics — every layer describes the same 13.8 kV / 480 V system, and every device is linked to its compartment in the 3D switchgear.

This is a demonstration with simulated values and a brand-neutral equipment architecture. It is not a live control interface and does not represent a specific installation. In a delivered system, breaker states, measurements and events come from the protective relays, trip units, meters and sensors through the SCADA and monitoring layers described on the Automation & Controls page.
Demonstration — simulated values

Topology, breaker positions and energized paths.

Both transformers energized from the MV bus; LV Bus 1 and Bus 2 each carried by their own main. Tie open. Generator in standby.

One-line diagram — Normal — utility, mains closed, tie open

MV Bus — 13.8 kV, 1200 AMV BUS · 13.8 kV · 1200 ALV Bus 1 — 480Y/277 V, 4000 ALV BUS 1 · 480Y/277 V · 4000 ALV Bus 2 — 480Y/277 V, 4000 ALV BUS 2 · 480Y/277 V · 4000 A Utility Source — Utility service entrance to the customer-owned medium-voltage switchgear.UTILITY SOURCE · 13.8 kV52-M1 MV Main — Interrupts load and fault current for the entire medium-voltage bus under control of the main protective relay.52-M1 MV Main■ CLOSED52-F1 MV Feeder 1 → T1 — Feeds transformer T1. Relay settings coordinate with the transformer damage curve and the LV main.52-F1 MV Feeder 1 → T1■ CLOSED52-F3 MV Feeder 3 — Feeds other medium-voltage loads (e.g., a remote unit substation). Shown in the MAINTENANCE state in one demo scenario.52-F3 MV Feeder 3■ CLOSED52-F2 MV Feeder 2 → T2 — Feeds transformer T2 (second source of the double-ended LV switchgear).52-F2 MV Feeder 2 → T2■ CLOSEDT1 Transformer T1 — Unit-substation transformer feeding LV Bus 1 through the 52-LM1 main.T1 · 2000 kVA13.8 kV Δ – 480Y/277 V · Z 5.75 %T2 Transformer T2 — Unit-substation transformer feeding LV Bus 2 through the 52-LM2 main.T2 · 2000 kVA13.8 kV Δ – 480Y/277 V · Z 5.75 %52-LM1 LV Main 1 — Main breaker for LV Bus 1. Participates in the main-tie-main automatic transfer scheme.52-LM1 LV Main 1■ CLOSED52-T Tie — Tie breaker between LV Bus 1 and LV Bus 2. Closed automatically by the MTM controller after a main opens on loss of source (open transition).52-T Tie□ OPEN52-LM2 LV Main 2 — Main breaker for LV Bus 2.52-LM2 LV Main 2■ CLOSED52-G Generator Breaker — Connects the standby generator to LV Bus 2 after both utility sources are lost and the mains are open (open transition).52-G Generator Breaker□ OPENG1 Standby Generator G1 — Standby generator (system demo). Emergency system classification and transfer times depend on the facility's code requirements.GG1 · 1500 kW52-C1 UPS A Input — Feeds the UPS A input (critical load path).52-C1 UPS A Input■ CLOSED52-C2 Mechanical A — Feeds the mechanical MCC A (chillers, pumps, fans).52-C2 Mechanical A■ CLOSED52-C3 Process & Lighting A — Feeds process and lighting distribution panels.52-C3 Process & Lighting A■ CLOSED52-C4 UPS B Input — Feeds the UPS B input.52-C4 UPS B Input■ CLOSED52-C5 Mechanical B — Feeds the mechanical MCC B. Communication loss on this trip unit is one demo scenario.52-C5 Mechanical B■ CLOSED52-C6 Spare / Future — Spare feeder for future load.52-C6 Spare / Future□ OPEN UPS A → Critical Load — Critical IT / process load via UPS A.UPS A → Critical Load Mechanical MCC A — Mechanical loads.Mechanical MCC A Process / Lighting — Distribution panels.Process / Lighting UPS B → Critical Load — Critical load via UPS B.UPS B → Critical Load Mechanical MCC B — Mechanical loads.Mechanical MCC B Other MV Loads — Remote unit substation / MV motors (demo).Other MV LoadsDemonstration — simulated values, not a live control interface
  • CLOSED
  • OPEN
  • TRIPPED
  • MAINTENANCE
  • COMMUNICATION LOST
  • Energized
  • De-energized
  • 52-M1 MV Main: CLOSED
  • 52-F1 MV Feeder 1 → T1: CLOSED
  • 52-F3 MV Feeder 3: CLOSED
  • 52-F2 MV Feeder 2 → T2: CLOSED
  • 52-LM1 LV Main 1: CLOSED
  • 52-T Tie: OPEN
  • 52-LM2 LV Main 2: CLOSED
  • 52-G Generator Breaker: OPEN
  • 52-C1 UPS A Input: CLOSED
  • 52-C2 Mechanical A: CLOSED
  • 52-C3 Process & Lighting A: CLOSED
  • 52-C4 UPS B Input: CLOSED
  • 52-C5 Mechanical B: CLOSED
  • 52-C6 Spare / Future: OPEN

Device panel

Select a breaker, bus, transformer or source on the one-line. Switch layers to see how the same device appears in protection, controls, communications, sensors, data and analytics.

Physical equipment ↔ digital twin ↔ data

The 3D model follows your selection: choose a device on the one-line and its compartment highlights; click a compartment and the one-line selects the device.

Loading 3D switchgear model…

How it works in a real system

From device to display

Positions and trips

Breaker 52a/52b contacts and relay/trip-unit event records give position and cause. The mimic shows OPEN, CLOSED, TRIPPED, MAINTENANCE and COMMUNICATION LOST as text, symbol and color — never color alone.

Measurements

Relays, trip units and power-quality meters publish voltage, current, power, harmonics, waveform captures and sequence-of-events over IEC 61850, DNP3 or Modbus to the station gateway and historian.

Sensors

Continuous temperature sensors at stabs, joints and terminations, partial-discharge sensors on MV insulation barriers and mechanism monitors add what electrical measurements cannot see.

Analytics

Health scores, thermal anomaly detection and operating-time trends support maintenance planning. Protective functions and switching operations remain governed by approved protection, control and safety procedures.

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