Professional study page for photovoltaic production, inverter strategy, battery storage,
electrical board integration, backup power, self-consumption and future-ready residential
or technical energy infrastructure.
The objective is to design a reliable energy concept where solar panels produce electricity,
an inverter converts and manages the energy, batteries store surplus production, and the electrical
board distributes energy safely to selected building loads.
Solar PanelsPV modules produce DC electricity from daylight.
InverterConverts DC to AC and manages production.
Battery StorageStores surplus energy for evening or backup use.
Electrical BoardProtection, load distribution and selected circuits.
Building LoadsLighting, appliances, PAC, server, security and critical loads.
Main Benefits
Self-consumptionUse more of your own solar electricity during the day.
Backup resilienceKeep selected critical loads running during power interruption.
Energy planningUnderstand production, storage and consumption before installation.
PAC compatibilityUse solar production to support heat pump operation and ECS production.
Technical room integrationPlan inverter, battery, protection and ventilation correctly.
Future expansionPrepare for extra panels, batteries, EV charging or smart control.
Upload Roof / Electrical Plans
To prepare the study, clients can upload available roof plans, terrace plans,
electrical board photos, energy bills and technical-room information.
Roof planAvailable surface, obstacles, chimneys, skylights and access.
Roof orientationSouth, east-west, flat roof, slope and shading conditions.
Electrical board photoMain breaker, differential protection, available space and existing circuits.
Energy consumption dataAnnual kWh, peak loads, day/night use and future PAC/EV assumptions.
Technical room photosInverter, battery, cable routing, ventilation and maintenance access.
Critical load listLoads that should stay powered during backup mode.
Battery systems and backup circuits require careful electrical design.
Not every building can automatically run all loads during outage mode.
Electrical Design Checks
Check
Purpose
Study Result
Mono 230 V / Tri 400 V
Confirm building supply type and inverter compatibility.
To be confirmed.
Main breaker capacity
Check available current and future load capacity.
To be confirmed.
PV inverter protection
Define AC/DC protection, isolation and safe connection.
To be designed.
Battery protection
Check location, fire clearance, communication and emergency disconnect.
To be designed.
Backup circuit separation
Separate critical loads from non-critical loads if backup is required.
Optional design.
PAC / EV future loads
Prepare future heat pump, EV charger or smart load management.
Project dependent.
Solar Production & Battery Logic
PV production estimateEstimated production based on surface, orientation, shading and panel capacity.
Self-consumption ratioHow much solar electricity can be used directly by the building.
Battery capacityBattery size selected according to consumption profile and backup target.
Backup durationEstimated runtime for selected critical loads.
Smart controlControl PAC, ECS, battery and large loads based on solar production.
Grid interactionInjection, meter, tariff, technical connection and local regulation check.
Systems Studio Solar & Storage Study Workflow
1. Existing SituationRoof, electrical board, consumption and technical room review.
2. Solar PotentialPanel surface, orientation, shading and production assumption.
3. Storage ConceptBattery capacity, backup logic and critical load separation.
4. Electrical ConceptInverter, protections, board upgrade and cable routing.
5. Cost EstimateEquipment, installation, electrical works and phased options.
6. Installer RequestStructured information package for contractor quotations.
Cost Estimation Scope
Systems Studio prepares a structured pre-estimate before installer quotation.
The budget depends on roof complexity, PV capacity, inverter type, battery capacity,
electrical board condition and backup requirements.
Package
Scope
Best For
Solar Feasibility Study
Roof review, production estimate, inverter concept and electrical board check.
Clients considering solar panels.
Solar + Battery Study
PV concept, battery capacity, self-consumption logic and backup strategy.
Final inverter selection, battery placement, protection devices and grid connection
must be validated by a qualified installer and local electrical compliance rules.
Technical Basis
This product page is prepared as a Systems Studio Energy Portal concept for solar production,
storage, inverter strategy, backup circuits and intelligent energy infrastructure.