IAS Accredited Solar Power Plant Inspection, Wind Energy

Inspection and More in Renewable Energy

Ramira Energy A.Ş. is accredited by IAS (International Accreditation Service) under ISO/IEC 17020 and provides independent Owner’s Engineering and Third-Party Inspection services for grid-connected photovoltaic (PV) power plants, covering installation, commissioning, and performance optimization.

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About Us

Our company provides supervision, inspection, and control services as a Type A Independent Third-Party Inspection Body for all types of power generation facilities established for electricity production, both domestically and internationally, covering the phases of installation, commissioning, operation, and facility handover.

Solar Energy

Solar Energy Inspection Services Within the Scope of International Accreditation

These services include the comparison of technology selection and manufacturing variants, capacity assessment studies, analysis of meteorological data, horizon profile, shading and tilt angle analysis, simulation studies, compilation of solar irradiation data, and the calculation of P50, P75, and P90 energy yield values.

Solar Power Panel

PV Module Manufacturing Inspections

These services include full-time inspections during PV module manufacturing, as well as storage, packaging, and transportation inspections.

Solar Energy Panels
Contract

On Site Inspection
Processes

These services include the preparation of technical specifications and contracts, support during EPC contractor and supplier selection, review, control, and approval of engineering designs, design selection and efficiency analysis, and verification of site installations and overall project compliance with TS EN ISO/IEC 17020 requirements.

Test

Testing and
Commissioning

These services include the execution of tests and measurements during the commissioning of the power plant, in accordance with the requirements of TS EN ISO/IEC 17020.

Test 1
First

First-Year Performance Ratio Verification

These services include the calculation of the overall system efficiency by processing production data together with irradiation and temperature data, performed twice per year starting from the commencement of power generation.

OUR REFERENCES

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All References