The utilization of hyperspectral detection devices, for natural resources mapping/exploitation through remote sensing techniques, dates back to the early 1970s. From the first devices utilizing a one-dimensional profile spectrometer, HyperSpectral Imaging (HSI) devices have been developed. Thus, from specific-customized devices, originally developed by Governmental Agencies (e.g. NASA, specialized research labs, etc.), a lot of HSI based equipment are today available at commercial level. Parallel to this huge increase of hyperspectral systems development/manufacturing, addressed to airborne application, a strong increase also occurred in developing HSI based devices for "ground" utilization that is sensing units able to play inside a laboratory, a processing plant and/or in an open field. Thanks to this diffusion more and more applications have been developed and tested in this last years also in the materials sectors. Such an approach, when successful, is quite challenging being usually reliable, robust and characterised by lower costs if compared with those usually associated to commonly applied analytical off- and/or on-line analytical approaches. In this paper such an approach is presented with reference to ore minerals characterization. According to the different phases and stages of ore minerals and products characterization, and starting from the analyses of the detected hyperspectral firms, it is possible to derive useful information about mineral flow stream properties and their physical-chemical attributes. This last aspect can be utilized to define innovative process mineralogy strategies and to implement on-line procedures at processing level. The present study discusses the effects related to the adoption of different hardware configurations, the utilization of different logics to perform the analysis and the selection of different algorithms according to the different characterization, inspection and quality control actions to apply.

Ore minerals textural characterization by hyperspectral imaging / Bonifazi, Giuseppe; Picone, Nicoletta; Serranti, Silvia. - STAMPA. - 8655:(2013), pp. 865510-1-865510-16. (Intervento presentato al convegno Conference on Image Processing - Algorithms and Systems XI tenutosi a Burlingame, California, United States nel FEB 04-06, 2013) [10.1117/12.2003054].

Ore minerals textural characterization by hyperspectral imaging

BONIFAZI, Giuseppe;PICONE, NICOLETTA;SERRANTI, Silvia
2013

Abstract

The utilization of hyperspectral detection devices, for natural resources mapping/exploitation through remote sensing techniques, dates back to the early 1970s. From the first devices utilizing a one-dimensional profile spectrometer, HyperSpectral Imaging (HSI) devices have been developed. Thus, from specific-customized devices, originally developed by Governmental Agencies (e.g. NASA, specialized research labs, etc.), a lot of HSI based equipment are today available at commercial level. Parallel to this huge increase of hyperspectral systems development/manufacturing, addressed to airborne application, a strong increase also occurred in developing HSI based devices for "ground" utilization that is sensing units able to play inside a laboratory, a processing plant and/or in an open field. Thanks to this diffusion more and more applications have been developed and tested in this last years also in the materials sectors. Such an approach, when successful, is quite challenging being usually reliable, robust and characterised by lower costs if compared with those usually associated to commonly applied analytical off- and/or on-line analytical approaches. In this paper such an approach is presented with reference to ore minerals characterization. According to the different phases and stages of ore minerals and products characterization, and starting from the analyses of the detected hyperspectral firms, it is possible to derive useful information about mineral flow stream properties and their physical-chemical attributes. This last aspect can be utilized to define innovative process mineralogy strategies and to implement on-line procedures at processing level. The present study discusses the effects related to the adoption of different hardware configurations, the utilization of different logics to perform the analysis and the selection of different algorithms according to the different characterization, inspection and quality control actions to apply.
2013
Conference on Image Processing - Algorithms and Systems XI
ore minerals; ore mineral; textures; hyperspectral imaging; mapping
04 Pubblicazione in atti di convegno::04b Atto di convegno in volume
Ore minerals textural characterization by hyperspectral imaging / Bonifazi, Giuseppe; Picone, Nicoletta; Serranti, Silvia. - STAMPA. - 8655:(2013), pp. 865510-1-865510-16. (Intervento presentato al convegno Conference on Image Processing - Algorithms and Systems XI tenutosi a Burlingame, California, United States nel FEB 04-06, 2013) [10.1117/12.2003054].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/515538
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