Sonic · Ultrasonic · Characterization

Breaking the wall of info-acoustic bureaucracy.

We build high-precision, open-field acoustic measurement hardware and spectral propagation modeling software for wind energy plants and industrial systems. Domestic, sovereign, field-validated.

⌬ PCT/TR2026/050286 TÜBİTAK 1001 TEKNOFEST 2026 Falling Walls Lab
Problem

Wind farms are not silent. You can't manage what you can't measure.

Türkiye's Environmental Noise Control Regulation (Official Gazette 32029, 30.11.2022) introduces concrete measurement obligations for wind farm operators. No domestic open-field, long-range measurement system exists today — every device is imported.

3 GW
≈ €2M/day exposure under non-compliance
0
Existing domestic open-field measurement systems
5 km
Target measurement range (mid-to-long)
12th
Development Plan alignment (Green & Digital)
Solution

Hardware, software, field — one system.

High-precision sensor networks, physics-based simulation and field-validated calibration that turn acoustic characterization into a quantifiable signal.

Acoustic Measurement Hardware

Field-rugged, open-air sound measurement device. Spectral and angular propagation tracking from 20–200 m short range to 1–5 km mid-long range.

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Spectral Propagation Modeling

Physics-based simulator that produces spectral decibel values as a function of wind speed and atmospheric conditions. Calibrated against field data.

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Sensor Networks & Digital Twin

Wide-area synchronized measurement. Acoustic mapping, early failure detection and a digital twin for the wind farm environment.

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Investor or wind farm operator?

We're running pilots. We share demos, technical datasets and the commercial roadmap.

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