HelioPoint – A Fast Airborne Calibration Method for Heliostat Fields

Author:

Krauth Julian J.1,Happich Christoph2,Algner Niels1,Broda Rafal1,Kämpgen Andreas3,Schnerring Alexander1,Ulmer Steffen3,Röger Marc1

Affiliation:

1. Institute of Solar Research DLR (German Aerospace Center), , Calle Doctor Carracido 44, Almería 04005 , Spain

2. CSP Services , Friedrich-Ebert-Ufer 30, 51143 Cologne , Germany

3. CSP Services , Paseo de Almería 73, Almería 04001 , Spain

Abstract

Abstract The pointing calibration of a newly built heliostat field can take up to several years. The state-of-the-art method typically used is accurate but slow. A faster method could reduce the commissioning time and therefore increase the viability of a solar tower plant significantly. In this work, we present HelioPoint, a fast airborne heliostat calibration technique, and demonstrate its accuracy to be better than 0.3 mrad. The measurement is performed using a light-emitting diode (LED) and a camera fitted to a drone. The only infrastructure required is the roughly pre-aligned heliostats themselves. The method is independent of the sun position and can be performed at any time for arbitrary calibration points.

Funder

Bundesministerium für Wirtschaft und Energie

Publisher

ASME International

Reference7 articles.

1. Review of Heliostat Calibration and Tracking Control Methods;Sattler;Sol. Energy,2020

2. Stone, K. W. , “Automatic Heliostat Track Alignment Method,” U.S. Patent No. 4,564,275. https://patents.google.com/patent/US4564275A.

3. Roadmap to Advance Heliostat Technologies for Concentrating Solar-Thermal Power;Zhu,2022

4. Göhring, F., Hilgert, C., Ulmer, S., Prahl, C., and Röger, M., “Verfahren zur Vermessung von Heliostaten,” German Patent No. 102015217086. https://patents.google.com/patent/DE102015217086A1.

5. A Two-Stage Method for Measuring the Heliostat Offset;Jessen,2022

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