Integrated Home Energy

Design the home as one connected energy system.

A complete home-energy strategy coordinates solar generation, battery storage, heating, cooling, EV charging and the property's electrical capacity. Start with the systems needed now and plan the infrastructure for what comes next.

Solar Panels
Generation source
Home Loads
Lights, appliances, hot water
Battery
Storage
Heat Pump
Heating
EV Charger
Transport
Unified monitoring connects all systems
One coordinated design
Property-specific phasing
Multi-system compatibility
Unified monitoring
System Architecture

One home. One connected energy strategy.

Designing all systems together from the start avoids expensive retrofits, ensures electrical compatibility and creates a home that responds to generation, demand and tariff signals as one coordinated unit.

Solar panels generate electricity
The array produces AC or DC electricity based on inverter type, powering the home first before routing surplus to storage or the grid.
Battery stores unused electricity
Surplus generation is stored and released when solar is not producing — in the evening, overnight or during peak tariff periods.
Heat pump uses electricity efficiently
An air source heat pump delivers 2.5–4 units of heat per unit of electricity, replacing gas for space heating and domestic hot water.
EV charger draws on grid, tariff or solar surplus
A smart EV charger coordinates with solar surplus detection, off-peak tariffs and load balancing to minimise charging cost.
Monitoring connects the complete system
A unified energy management platform gives visibility of generation, storage, consumption, EV charging and heat pump operation in one interface.
Why design together?
Inverter compatibility
Solar inverter, battery inverter and EV charger must communicate or share the same protocol to enable coordinated control.
Electrical capacity planning
Adding a heat pump, EV charger and battery together can triple peak electrical demand. The consumer unit and supply must be planned accordingly.
Tariff optimisation
Time-of-use tariffs can be used to charge the battery and EV at low rates. A coordinated system does this automatically without manual input.
Infrastructure for future systems
Pre-running conduit and cable routes for EV charging, battery or heat pump during an earlier phase reduces disruption and cost later.
System Scenarios

Integrated system scenarios

Every integrated system is designed for the property. These are not fixed retail bundles.

Prices are indicative European market ranges. UK prices and full project budgets are provided after the initial assessment.

From €14,000
Solar + Storage
The most common starting point for whole-home electrification. Generates and stores your own electricity for use at any time of day or night.
  • 6–10 kWp solar array
  • 5–10 kWh battery system
  • Hybrid or string inverter
  • Energy monitoring
  • Grid export optimisation
Explore Solar + Storage →
From €12,000
Solar + EV Charging
Combine solar generation with a smart EV charger to route surplus electricity directly to your vehicle, reducing charging cost and grid dependency.
  • 6–10 kWp solar array
  • Smart EV charger with solar mode
  • CT clamp metering
  • Tariff scheduling setup
  • Load management configuration
Explore Solar + EV →
From €17,000
Solar + Heat Pump
Replace gas heating with an air source heat pump powered partly by your own solar generation — reducing both carbon output and running costs.
  • 6–12 kWp solar array
  • Air source heat pump
  • Hot water cylinder
  • Heat pump controller setup
  • Heating system integration
Explore Solar + Heat Pump →
From €18,000
Solar + Battery + EV
A three-system integration that stores solar electricity and shares it intelligently between the home and vehicle through coordinated energy management.
  • 6–10 kWp solar array
  • 5–10 kWh battery system
  • Smart EV charger
  • Unified monitoring platform
  • Tariff and surplus optimisation
Explore Solar + Battery + EV →

Prices are indicative European market ranges as of 2026 and exclude local taxes. UK prices are confirmed during the initial assessment. Final project cost depends on property characteristics, equipment selection, installer rates and applicable incentives.

Staged Installation

You do not need to install everything at once.

A phased approach lets you start with the highest-priority systems and add to the infrastructure as budget allows — without redoing work. The key is planning the full architecture from the beginning, even if only part is installed immediately.

1
Electrical infrastructure
Assess and prepare the consumer unit, main supply capacity, earthing, and cable routes for all planned future systems. This is the lowest-cost work to do upfront and the most expensive to retrofit later.
2
Solar installation
Install a hybrid-inverter-ready array that allows battery storage to be added without changing the inverter. Roof assessment and structural survey inform panel count and layout.
3
Battery storage
Add when the generation profile justifies storage — usually when the household is regularly exporting significant surplus. Size and chemistry are matched to daily demand patterns.
4
Heating or cooling
Heat pump or air conditioning units are added after a heat loss assessment, hot water calculation and electrical load review to ensure the supply can support the additional demand.
5
EV charging
The final coordinated element. Charger is selected for compatibility with the inverter and battery system. Load balancing prevents supply overload when multiple high-power loads run simultaneously.
6
Monitoring and optimisation
Unified monitoring gives visibility and control of all systems. Tariff optimisation, solar surplus routing and demand scheduling are configured for the household's specific patterns.
Equipment

Equipment pathways

LUMIXIS-Supplied Equipment
  • Products are selected after technical assessment of your property, electrical supply and existing systems
  • No single brand is mandated — selection is based on compatibility, warranty terms and project requirements
  • Multiple options are compared for each system category before recommendation
  • Country availability is confirmed before any product is specified
  • Warranty and aftercare routes are reviewed as part of the selection process
  • Installation by qualified professionals appropriate to each system type
  • Documentation, commissioning and handover included in the project scope
  • Monitoring setup and energy management configuration included where applicable
Customer-Supplied Equipment
  • Equipment already purchased by the customer is reviewed before acceptance into the project scope
  • Technical documentation, specifications and warranty terms must be provided
  • Compatibility with other project systems is assessed — acceptance is not guaranteed
  • Installation requirements (electrical, structural, network) are verified against country-specific rules
  • Warranty conditions are reviewed — customer-supplied equipment may carry different terms
  • If the equipment is not compatible, alternatives will be proposed with technical reasoning
  • LUMIXIS does not accept liability for the performance of customer-supplied products that fail compatibility checks
  • All decisions regarding customer-supplied equipment are confirmed in writing before the project commences
Comparison

Integrated system comparison

Scenario Systems Main Benefit Electrical Capacity Monitoring Best For
Solar + Storage Solar · Battery Self-consumption and tariff shift Standard consumer unit usually sufficient Generation + storage dashboard Properties not yet on EV or heat pump
Solar + EV Charging Solar · Smart charger Low-cost EV charging from solar surplus Load management may be required Solar surplus + charging session view EV owners with south-facing roof
Solar + Heat Pump Solar · Heat pump Low-carbon heating with lower running cost Heat pump adds 3–6 kW peak load Generation + heat pump operation Replacing gas boiler, good solar resource
Solar + Battery + EV Solar · Battery · Charger Coordinated generation, storage and transport Load balancing typically required Full three-system dashboard High-mileage EV drivers with storage
Complete Electric Home Solar · Battery · Heat pump · EV Full electrification, lowest total cost Consumer unit upgrade usually required Unified whole-home energy platform New builds and deep renovation projects

System combinations and compatibility details are confirmed during the technical assessment for each project. Electrical capacity requirements vary significantly by property.

Plan your complete home energy strategy.

Start with a conversation about your property, current systems and long-term plans. We will scope an integrated design that matches your priorities and budget.