Ore mineral discrimination using hyperspectral remote sensing—a field-based spectral analysis

Author:

Balasubramanian U. A. B. Rajasimman,Saravanavel J.,Gunasekaran S.

Publisher

Springer Science and Business Media LLC

Subject

General Earth and Planetary Sciences,General Environmental Science

Reference9 articles.

1. Boardman JW, Kruse FA (1994) Automated spectral analysis: A geological example using AVIRIS data, northern Grapevine Mountains, Nevada. In: Proceedings, Tenth Thematic Conference, Geologic Remote Sensing, 9–12 May 1994, San Antonio, Texas, p. I-407–I-418

2. Clark RN (1999) Spectroscopy of rocks and minerals and principles of spectroscopy. In: Rencz AN (ed) Remote sensing for the earth sciences: manual of remote sensing, vol 3. Wiley, New York, pp 3–58

3. Crosta AP, De Souza CR, Azevedo F, Brodie C (2003) Targeting key alteration minerals in epithermal deposits in Patagonia, Argentina, using ASTER imagery and principal component analysis. Int J Remote Sens 24(21):4233–4240

4. Crósta AP, De Souza Filho CR (2000) Hyperspectral remote sensing for mineral mapping: a case-study at Alto Paraíso De Goías, Central Brazil. Revista Brasileira de Geociências 30(3):551–554

5. Das IC (2002) Spectral signatures and spectral mixture modeling as a tool for targeting aluminous laterite and bauxite ore deposits. GISdevelopment.net, Koraput, India

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