Design choices start with system safety, traceability and controlled operating behaviour.
Technology
Engineering the
connections that matter.
Weyland’s technology connects storage, the power interface, orchestration and operation. The value comes from controlling the handoffs between those layers.
The NeoEnergy stack
Four layers that work as one system.
Energy sources sit upstream and site demand sits downstream. Weyland’s system boundary connects the four control layers between them.
- 01StoreBattery packs + BMS
- 02InterfacePCS + inverter
- 03OrchestrateEMS + telemetry
- 04OperateCommission + maintain
Functional architecture. Final equipment, specifications and responsibilities are project-defined.
protection
real-time control
AI / industrial load
Company-described architecture. Product ownership, ratings, compatibility and performance require approved evidence.
Three control points
Interface. Dispatch. Operate.
The electrical interface shapes voltage and real-time conversion. Dispatch coordinates charging and discharging against site, grid and price constraints. Operation connects commissioning, monitoring, maintenance and permitted services.
Lifecycle & Intelligence
A shared view from asset to network.
Real-time monitoring, asset status, geospatial visibility and performance reporting create a shared operating view across NeoEnergy and NeoCloud infrastructure.
- Generation and storage visibility
- Site and load monitoring
- Energy and carbon reporting
- Operational decision support
control plane
Functional architecture only. Project scope and performance require approved engineering evidence.
Research with an operating purpose
Technology has to work in the field.
Generation, storage and controls are engineered around the load they must serve.
Products are designed with service, operation, second-life use and recycling in view.