Demo Pack 02
Hybrid mini-grid controls
An illustrative controls concept for a PV, battery, generator, and load mini-grid. It demonstrates operating states, permissives, interlocks, fail-safe responses, alarm logic, HMI structure, and test planning.
Representative controls example - not a completed installation. Topology, thresholds, interfaces, and protections require project and OEM validation.
Operating states
Define system behaviour before writing control logic.
Mini-grid controls fail when the operating philosophy is vague. This state model gives the site team a shared view of normal operation, generator support, battery protection, and fault handling.
Control philosophy
- Prioritize available PV while bus conditions, equipment limits, and battery constraints remain healthy.
- Request generator start only from validated SOC, power, schedule, or fault criteria with hysteresis.
- Prevent unsynchronized closure, unintended backfeed, and generator/BESS paralleling unless the approved design permits it.
- Log every automatic state change for commissioning review.
Automation logic
Interlocks, alarms, and I/O mapping in a reviewable format.
Generator start permissive
- 01Validated SOC below the start threshold for 180 seconds
- 02No active emergency stop or protection trip
- 03Generator available, in remote mode, and breaker proven open before crank
- 04Speed, voltage, and frequency valid; warm-up complete before the approved transfer sequence
I/O map snapshot
Alarm matrix
Operator screens
HMI structure built for fast troubleshooting.
A clean HMI helps the operator understand which source is serving the load, why a transition happened, and what needs attention before reset.
Mini-grid dashboard concept
PV inverter Battery
Bidirectional PCS Generator
Genset breaker
Conceptual AC-coupled topology only. The grid-forming source, neutral and earthing arrangement, breaker logic, and permitted paralleling mode must be defined for the project.
Screen list
- Overview screen with source status, load, SOC, generator state, and alarms.
- Energy screen with PV, battery, generator, load, and daily totals.
- Alarm screen with severity, timestamp, acknowledgement, and operator note.
- Settings screen with protected thresholds and commissioning records.
Commissioning handover
Make controls testable before the site goes live.
Factory test plan
Simulate SOC, PV availability, breaker status, generator readiness, and communication loss.
Site acceptance test
Verify state transitions, interlocks, alarms, HMI values, manual reset, and event logging.
Operator handover
Provide alarm response notes, reset rules, operating limits, and support escalation path.
Next step
Discuss a comparable controls scope.
A project controls package is developed from the approved operating philosophy, equipment interfaces, protection scheme, and test plan.