01 / SOLAR AT WORK

A roof that contributes
to the working day.

Solar generation is most useful when you understand it alongside the way your business uses electricity.

Generation, business demand and the gridRooftop generation can supply electricity used on site. The grid can supply a shortfall. Any export is a separate condition determined by the agreed connection. This is a relationship diagram, not measured power or a wiring design.Rooftop generationUsed on siteGrid supply
A relationship, not a wiring design. Import and possible export are different operating conditions.

Generation meets demand.

Electricity generated on the roof can supply power your business is using at the time. How much imported electricity it replaces depends on the generation profile and the timing of that demand.

The grid remains part of the system. Storage may shift some energy to later use; any export depends on the design and agreed connection. Solar does not establish complete independence or guarantee a lower bill.

Further reading: Australian Government: using generation on site.

THE BUSINESS CASE

Start with the inputs.
Then judge the investment.

Installation is a separate investment from the £300 application service. A useful proposal should connect the expected generation to your premises, costs and actual electricity use.

Your roof and system
Design, installation and connection costs; expected generation; maintenance and finance.
Your working day
Measured demand and when it occurs—not just an annual electricity total.
Your arrangements
Import tariffs, any agreed export arrangement, and the costs and operation of optional storage.

EQUIPMENT & SUPPORT

Look beyond the
headline warranty.

Equipment selection, applicable type-test documentation, installation and ongoing support all matter. Ask what is proposed, what documentation supports it and who will help if a component needs attention.

Product warranty
Cover for defined product faults, subject to the warrantor’s terms.
Performance warranty
A stated output commitment under specified conditions. It is not a forecast of your bills or total system performance.

Compare those with installation workmanship cover. The generic equipment in the film is an illustration, not an endorsed specification.

THE LONGER VIEW

A whole-life
view.

Solar generates electricity without burning fuel during operation. Life-cycle studies find lower greenhouse-gas emissions for solar electricity than fossil-fuel generation, while also accounting for manufacturing, transport and end of life.

Consider the proposed system’s useful output, its materials and how equipment will be maintained and eventually recovered. We do not attach a carbon saving or an environmental equivalent to the illustrative campus.

Further reading: IEA PVPS: environmental life-cycle assessment. These studies do not provide a figure for your roof.

MakeUse & maintainRecover

Recorded generation example

A supplied historical record, separate from the illustrative site in the journey.

Site
Premier Composites
Location
Lincolnshire, England
Recorded date
Source
Supplied transcription from Tigo Energy Intelligence (EI)

206.41 kWh recorded that day

Daily total transcribed from the Tigo portal. Not independently verified. This is a historical record, not a live feed or a forecast. No Aesir installation or customer endorsement is claimed. The 879-module campus is a separate illustration.

Approximate hourly generation on 24 August 2026 15 recorded hourly estimates from 06:00 to 20:00. Values are listed in the hourly readings table below. kWh 0 10 20 30 06:00: approximately 0.5 kWh06:00 07:00: approximately 4 kWh 08:00: approximately 7.2 kWh 09:00: approximately 7.7 kWh09:00 10:00: approximately 16.3 kWh 11:00: approximately 25.5 kWh 12:00: approximately 24.2 kWh12:00 13:00: approximately 29 kWh 14:00: approximately 25.9 kWh 15:00: approximately 25.4 kWh15:00 16:00: approximately 20.7 kWh 17:00: approximately 15.4 kWh 18:00: approximately 2.9 kWh18:00 19:00: approximately 0.4 kWh 20:00: approximately 0.05 kWh
Approximate hourly readings transcribed from the portal, in kWh per hour interval. The daily total is supplied separately from these approximate chart readings.

Supplied hourly source note: read off the Solar Production bar chart; approximate to ~0.2 kWh.

Approximate hourly readings
Approximate hourly generation at Premier Composites on 24 August 2026 (kWh per hour interval)
Hour shownApproximate energy (kWh per hour interval)
06:000.5
07:004
08:007.2
09:007.7
10:0016.3
11:0025.5
12:0024.2
13:0029
14:0025.9
15:0025.4
16:0020.7
17:0015.4
18:002.9
19:000.4
20:000.05

READING THE RECORD

Energy over time.
Power at a moment.

kWh measures energy over a period. The daily total and approximate hour intervals describe recorded generation. kW measures power at a moment. They answer different questions.

Generation records help an operator see patterns and investigate changes. On their own they do not establish consumption on site, imports, exports, savings or the reason for a change. Compare them with demand records, conditions and the system’s specification.

ABOUT THE JOURNEY

Illustration of operation after the required permissions and commissioning. The commercial campus and its 879 modules are illustrative, not a customer case study or a verified eligible A1-2 design.

The film compresses distance, time and scale to explain the connection from sunlight to useful electrical energy.

About the illustrated journey

Absorb and collect. Silicon absorbs light and transfers its energy to charge carriers. The cell’s structure enables charge separation and current extraction through metal contacts. The photon does not become an electron.

Direct current to alternating current. Module interconnections and a connected DC circuit carry electrical energy from the illuminated array to an inverter, which converts DC to AC.

The blue moving bands illustrate energy flow, not individual electrons or a measured speed. The inverter graph shows voltage changing over time; its curve is not the shape of a cable. Generation requires continuing illumination and a connected circuit.

The generic module, enlarged cell layers and inverter are original educational illustrations. They do not identify a manufacturer, complete string design, equipment rating or live output. Learn more from the DOE cell explanation and inverter explanation.

Energy put to work. Lighting, equipment and screens illustrate operation after the required permissions and commissioning. Ambient daylight is already present; continuing generation and the wider connected system supply useful activity, not one photon or one module.

Optional storage. The example uses a separate bidirectional converter on an AC branch. Available solar energy can charge the battery; later, stored energy can help supply the business. Charging and discharge are separate moments. Storage has finite capacity and power, and conversion incurs losses. Adding a battery does not automatically provide backup: that needs a specifically designed system. Read the DOE storage explanation.

The grid relationship. The later scene illustrates imported supply. Possible export is a different condition; design and the agreed connection determine operation. The illustration does not promise export permission, earnings, complete independence or uninterrupted supply. See National Grid’s G99 procedures for network-specific guidance; project suitability still needs review.

The commercial campus and its 879 modules are illustrative, not a customer case study or a verified eligible A1-2 design. The £300 total covers one suitable Form A1-2 application service, not installation or every commercial project.

Sources for this page

General energy explanations use primary sources. They do not establish the suitability, costs or performance of a particular installation. The historical example has its own supplied-record attribution.

Sources reviewed 8 September 2026. Aesir’s application-service scope and fee are the supplied offer, separate from these technical sources.

THE ILLUSTRATED JOURNEY

Image credits

Earth surface imagery: NASA Earth Observatory, Blue Marble: Next Generation, July 2004, by Reto Stöckli. Cloud imagery: NASA Goddard Space Flight Center, by Reto Stöckli, with enhancements by Robert Simmon.

Coastline data: Natural Earth (public domain). The commercial site, equipment and cell cutaway are original illustrations.

The journey combines adapted historical imagery, authored lighting and compressed distances and time. It is a cinematic scientific illustration, not live satellite imagery. NASA does not endorse Aesir Solar.

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