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Accuracy and energy characteristics of paraboloidal heliostat system

R. A. Zakhidov, A. A. Vainer

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Abstract

The specific system is designed in two stages. One first determines on the basis of the requirements with respect to overall power and flux density in the working zone the overall dimensions and configuration of the reflectors (aperture-dimensional design). Then one establishes the basic requirements with respect to accuracy of fabrication and alignment of the mirror elements (accuracy-energy design). An accuracy-energy analysis of a paraboloidal heliostat system is described. (WHK)

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What this paper is about

The specific system is designed in two stages. One first determines on the basis of the requirements with respect to overall power and flux density in the working zone the overall dimensions and configuration of the reflectors (aperture-dimensional design). Then one establishes the basic requirements with respect to accuracy of fabrication and alignment of the mirror elements (accuracy-energy design). An accuracy-energy analysis of a paraboloidal heliostat system is described. (WHK)

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Available abstract

The specific system is designed in two stages. One first determines on the basis of the requirements with respect to overall power and flux density in the working zone the overall dimensions and configuration of the reflectors (aperture-dimensional design). Then one establishes the basic requirements with respect to accuracy of fabrication and alignment of the mirror elements (accuracy-energy design). An accuracy-energy analysis of a paraboloidal heliostat system is described. (WHK)

Key concepts: Heliostat, Aperture (computer memory), Energy (signal processing), Optics, Basis (linear algebra), Power (physics), Computer science, Engineering

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