Measurement
Separating consumption by warehouse zone and tenant space.
A shared view of warehouse, charging and building-services loads.
30-minute introductory discussion · no obligation

Scepi Smart EMS connects a logistics centre's lighting, building services, chargers and submeters. Energy demand can be understood alongside shift patterns, loading windows and tenant usage, showing when and why it occurs.
Separating consumption by warehouse zone and tenant space.
Tracking simultaneous loads from forklift and vehicle charging.
Comparing lighting and HVAC operating hours with actual use.
Aligning charging and operational priorities with electrical connection limits.
Compare like-for-like operating periods and investigate changes before attributing them to an energy action.
Charging energy and time available for charging. Sensor and data-source compatibility is assessed during scoping.
Smart EMS brings accessible meter and operating data together. Monitor provides visibility; Executive supports analysis and reporting; Autopilot adds approved control. Interfaces, alerts, retention and integrations are scoped for the site.
Explore the platform ↗
The same software tiers apply across industries. Industry-specific sensors, interfaces and workflows are implemented as a separate project.
A shared view of site consumption, production and basic energy costs.
Plan details and scope ↗Analysis, exports, forecasts and reports to support decisions.
Plan details and scope ↗Approved automatic control within agreed operating limits.
Plan details and scope ↗Hardware, implementation, operations and optional modules are separate costs. Prices are net of VAT. Full comparison ↗
Annual energy cost, excluding VAT, for the warehouse zones, building services and charging infrastructure in scope.
The starting figures are editable examples, not measured customer data or promised savings. All amounts are net of VAT, in Hungarian forints.
Assumed savings minus annual software and other recurring costs.
The estimated annual net benefit is positive.
With the entered water savings; excluding the one-off investment.
| Assumption | Annual net benefit |
|---|---|
| Half the entered rate | 701,000 HUF |
| The entered rate | 1,701,000 HUF |
| 1.5 times the entered rate | 2,701,000 HUF |
Uses 50%, 100% and 150% of the entered energy and water saving rates, capped at 100% savings. A sensitivity analysis, not a forecast.
Annual net benefit = energy cost × energy saving rate + water cost × water saving rate − annual licence − other annual costs. Payback = one-off investment / annual net benefit. First-year ROI = (annual net benefit − one-off investment) / one-off investment × 100%.
The model assumes constant annual costs and savings. It excludes financing, tax, inflation, discounting and residual value. Measurement supports decisions; savings require validated actions and follow-up measurement. Food safety, process and operational limits take priority.
List prices checked: 28 September 2026. Plans and included services.
Reductions in unnecessary operating hours and baseload. Demand-charge or charging-tariff benefits supported by the applicable contract.
The calculator includes only the energy and water cost buckets entered above. Capacity, avoided damage and other value must be evaluated separately from evidence.
We define the decision to support, the data needed and the operating limits before implementing the integration.
Meter list, interfaces, responsibilities and a comparable baseline.
Connect the required data, test timestamps, gaps and alerts.
Approve any control rules, test fallback and manual override, then measure results against the agreed baseline.
This first requires knowing when each vehicle will next be needed and its required state of charge. These requirements and site limits can inform charging priorities where the chargers have a controllable interface.
With suitable submetering and a meter hierarchy, consumption can be assigned to a tenant or zone. Suitability for commercial billing depends separately on the meters and the agreed billing arrangements.
The logistics application focuses on warehouse zones, charging, lighting and building services. For refrigerated warehouses, it should be designed together with the cold storage measurement requirements and operating rules.
Monitor, Executive and Autopilot are annual per-site software licences. Meters, hardware, integration, implementation, operations and optional modules are separately scoped and priced. The calculator uses the published licence prices and editable project budgets.
Bring an energy bill, a meter list and the operating question you want to resolve. We can use them to define a practical first step.
30-minute introductory discussion · no obligation
Content and public licence prices reviewed: 28 September 2026. · Scepi Consulting
A shared view of warehouse, charging and building-services loads.
30-minute introductory discussion · no obligation

Scepi Smart EMS connects a logistics centre's lighting, building services, chargers and submeters. Energy demand can be understood alongside shift patterns, loading windows and tenant usage, showing when and why it occurs.
Separating consumption by warehouse zone and tenant space.
Tracking simultaneous loads from forklift and vehicle charging.
Comparing lighting and HVAC operating hours with actual use.
Aligning charging and operational priorities with electrical connection limits.
Compare like-for-like operating periods and investigate changes before attributing them to an energy action.
Charging energy and time available for charging. Sensor and data-source compatibility is assessed during scoping.
Smart EMS brings accessible meter and operating data together. Monitor provides visibility; Executive supports analysis and reporting; Autopilot adds approved control. Interfaces, alerts, retention and integrations are scoped for the site.
Explore the platform ↗
The same software tiers apply across industries. Industry-specific sensors, interfaces and workflows are implemented as a separate project.
A shared view of site consumption, production and basic energy costs.
Plan details and scope ↗Analysis, exports, forecasts and reports to support decisions.
Plan details and scope ↗Approved automatic control within agreed operating limits.
Plan details and scope ↗Hardware, implementation, operations and optional modules are separate costs. Prices are net of VAT. Full comparison ↗
Annual energy cost, excluding VAT, for the warehouse zones, building services and charging infrastructure in scope.
The starting figures are editable examples, not measured customer data or promised savings. All amounts are net of VAT, in Hungarian forints.
Assumed savings minus annual software and other recurring costs.
The estimated annual net benefit is positive.
With the entered water savings; excluding the one-off investment.
| Assumption | Annual net benefit |
|---|---|
| Half the entered rate | 701,000 HUF |
| The entered rate | 1,701,000 HUF |
| 1.5 times the entered rate | 2,701,000 HUF |
Uses 50%, 100% and 150% of the entered energy and water saving rates, capped at 100% savings. A sensitivity analysis, not a forecast.
Annual net benefit = energy cost × energy saving rate + water cost × water saving rate − annual licence − other annual costs. Payback = one-off investment / annual net benefit. First-year ROI = (annual net benefit − one-off investment) / one-off investment × 100%.
The model assumes constant annual costs and savings. It excludes financing, tax, inflation, discounting and residual value. Measurement supports decisions; savings require validated actions and follow-up measurement. Food safety, process and operational limits take priority.
List prices checked: 28 September 2026. Plans and included services.
Reductions in unnecessary operating hours and baseload. Demand-charge or charging-tariff benefits supported by the applicable contract.
The calculator includes only the energy and water cost buckets entered above. Capacity, avoided damage and other value must be evaluated separately from evidence.
We define the decision to support, the data needed and the operating limits before implementing the integration.
Meter list, interfaces, responsibilities and a comparable baseline.
Connect the required data, test timestamps, gaps and alerts.
Approve any control rules, test fallback and manual override, then measure results against the agreed baseline.
This first requires knowing when each vehicle will next be needed and its required state of charge. These requirements and site limits can inform charging priorities where the chargers have a controllable interface.
With suitable submetering and a meter hierarchy, consumption can be assigned to a tenant or zone. Suitability for commercial billing depends separately on the meters and the agreed billing arrangements.
The logistics application focuses on warehouse zones, charging, lighting and building services. For refrigerated warehouses, it should be designed together with the cold storage measurement requirements and operating rules.
Monitor, Executive and Autopilot are annual per-site software licences. Meters, hardware, integration, implementation, operations and optional modules are separately scoped and priced. The calculator uses the published licence prices and editable project budgets.
Bring an energy bill, a meter list and the operating question you want to resolve. We can use them to define a practical first step.
30-minute introductory discussion · no obligation
Content and public licence prices reviewed: 28 September 2026. · Scepi Consulting