Solar Energy, Powering Scalable Clean Generation

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INTRODUCTION

Solar, unlocking scalability

Solar photovoltaic (PV) technology is now one of the fastest-growing, most scalable sources of clean electricity, deployed from rooftops and carports to floating systems and utility-scale ground-mounted plants. Its performance depends on irradiation levels, module behaviour (LID, PID, LETID, mismatch), inverter efficiency, soiling, shading and overall system design. As the market expands and suppliers evolve quickly, ensuring quality and long-term reliability becomes increasingly complex. From equipment and layout assessment to validating bankable energy yield, solar assets require expert oversight to secure performance, mitigate risks and maximise production throughout their lifetime.

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CHALLENGES

How to handle technical Challenges Across Solar Configurations

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Ground-Mounted Utility-Scale — Unlocking Large-Scale Productivity

Utility-scale PV plants rely on optimal land design, precise topographic modelling and high-quality irradiation data. Environmental constraints, shading obstacles and cable routing strongly influence long-term yield and LCOE. Ensuring accurate EYA inputs, robust design validation, and reliable contractors is essential, as small deviations can have multi-MW impacts. Greensolver reviews site modelling, equipment suitability, grid constraints and performance risks to secure bankable project outcomes.

Agrivoltaics (Agri PV)

Agrivoltaic systems combine agricultural activity with solar generation, covering a wide range of configurations: open-field crops and grazing systems for sheep, cattle and other livestock. Each setup imposes specific constraints: tracker height and spacing for machinery access, shading variability for crop physiology, animal movement compatibility, and durability of structures exposed to agricultural operations. Greensolver assesses agronomic needs based on agronomist studies, shading patterns, equipment suitability and regulatory frameworks to design bankable agrivoltaic projects that optimise both agricultural output and PV production.

Rooftops

Rooftop PV requires rigorous structural checks, fire-safety compliance and careful integration with building operations. The real challenge comes from the large number of small and diverse sites, each with different layouts and documentation, making consistent monitoring and quality control difficult. Greensolver standardises portfolio-wide assessments — structural capacity, regulatory compliance, inverter setup and self-consumption schemes — and, in asset management, provides continuous performance tracking, contractor supervision and harmonised reporting to maintain high reliability across extensive rooftop portfolios.

Floating PV

Floating PV introduces unique challenges: anchoring, water-level variability, corrosion risks, and increased thermal dynamics. Equipment must be adapted to humidity, wind loads and UV exposure, while environmental constraints influence permitting and design choices. Greensolver evaluates floater suitability, anchoring design, equipment durability, and site conditions to ensure long-term reliability of floating systems.

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CUSTOMERS REFERENCES

We analyse and overview main and leading PV equipment Manufacturers

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DATA SPEAK

Track Record
in Solar Energy

Leveraging 20 years of renewable market insight.

30GW

Assets Audited

3GW

Under Asset Management

330

Rooftops asset under management
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As a large provider of advisory and asset management services in solar and wind farms in the UK and across Europe, Greensolver is placed as a perfect strategic partner for us to achieve our own objectives.

Giles Clarke  —  Director
BLOG

The Latest Renewable Solar News

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What Profitability Can Be Expected from an Agrivoltaic Project?

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What is TOPCon PV technology? Is it worth investing in?

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Top Tips for Cleaning Solar PV Modules

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Wind & Solar farms: Negotiate better conditions for your O&M contracts

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Understanding greenfield and brownfield solar PV plants

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The key issues that can affect performance of your PV plant: Development Stage

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The Importance of the Soiling Rate of PV Modules

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A burning issue: managing PV plant fire

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A new type of solar panel is emerging: Bifacial PV modules

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