Energy management for luxury residences

Large buildings, photovoltaics, batteries and vehicle charging change a residence's energy profile. We design energy management as a dedicated pillar — from measurement and optimization to integration of renewables.

Why energy is a dedicated pillar

A modern luxury residence is a significant energy system: heavy loads (HVAC, pool, wellness), on-site generation from photovoltaics, battery storage and electric vehicle charging. Without planned management these elements work against each other. We design them to work together — efficiently, reliably and measured.

We introduce energy early, at concept stage: routing for PV, space and supply for batteries, wiring for EV charging and metering points are planned before execution, while changes are still cheap.

Scope of energy management

01
Energy monitoring and sub-metering
Measuring consumption by zone and system — the basis for understanding, optimization and reporting.
02
Photovoltaics (PV)
Design and integration of a photovoltaic system with the installation and consumption management against production.
03
Battery storage (ESS)
Storing surplus energy, bridging peak loads and supporting backup power.
04
EV charging and load management
EV chargers with dynamic load management (peak management) so the supply connection is not overloaded.
05
HVAC consumption optimization
Zone-based heating and cooling control by occupancy, schedule and the price of energy.
06
Energy dashboards and visualization
Real-time overview of production, consumption and storage, with a clear display for the user.
How it works

Energy through the smart building

Energy management does not happen separately — it is realized through the smart building layer. The same system that runs lighting, shading and HVAC measures consumption and manages production and storage. When automation and energy are designed together, light behaves naturally, shading follows the rhythm of the day, and climate control does not require constant adjustment because heating and cooling follow the real need of the space.

  • Shared bus and logic with automation
  • Scenes that take energy into account
  • A single visualization
  • Designed together, not as an afterthought
Approach

Measured, not assumed

We do not promise percentages up front. Energy monitoring provides real data by zone and system — only on that basis is the effect optimized and proven. An honest approach, with no invented numbers.

  • Insight into consumption before optimization
  • Optimization based on what is measured
  • Transparent reporting
  • Energy efficiency from the design stage

Control, efficiency, autonomy

Insight
Consumption measured by zone and system
Efficiency
HVAC and peak-load optimization
Renewables
PV and battery storage integration
Readiness
EV charging and load management

Energy management — questions

Energy monitoring and zone-based metering (sub-metering), integration of photovoltaics and batteries, EV charging, load management, HVAC consumption optimization and energy dashboards with visualization.
As early as possible — as a rule, at concept stage. Routing for PV, space for batteries and wiring for EV charging must be planned before execution to avoid costly later changes.
Yes. We design integration of photovoltaic systems and battery storage with the installation and the smart building system, managing consumption against production and tariffs.
Yes. We design EV chargers with dynamic load management so the supply is not overloaded, coordinated with other loads and backup power.
Energy monitoring and sub-metering provide insight into consumption by zone and system — the basis for optimization. Actual savings depend on the building and user habits and are established by measurement, not by blanket figures.

Design energy in time

Send us a floor plan and your energy goals — we will propose metering, PV/battery integration and optimization within the smart building.