The Experts below are selected from a list of 5007 Experts worldwide ranked by ideXlab platform

B Rasaiah - One of the best experts on this subject based on the ideXlab platform.

  • GSR - A novel Metadata Standard for in situ marine spectroscopy campaigns
    2020
    Co-Authors: B Rasaiah, Simon Jones, C Bellman, T J Malthus
    Abstract:

    Metadata are an important component in the cataloguing and analysis of in situ spectroscopy datasets because of their central role in identifying and quantifying the quality and reliability of spectral data and the products derived from them. This paper presents approaches to constructing a novel Metadata Standard for marine spectroscopy that serves to ensure a high level of reliability, integrity, and longevity for a spectroscopy dataset. Examined are the challenges presented by designing a Standard that meets the unique requirements of in situ marine spectroscopy datasets, including the special case of measuring reflectance for underwater coral targets. Issues such as field measurement methods, instrument calibration, and data representativeness are investigated. The proposed Metadata model incorporates expert panel recommendations that include Metadata protocols critical to all campaigns, and those that are restricted to campaigns for specific marine environments. The implication of semantics and syntax for a robust and flexible Metadata Standard are also considered. Approaches towards an operational and logistically viable implementation of a schema are discussed. This paper also proposes a way forward for adapting and enhancing current geospatial Metadata Standards to the unique requirements of field spectroscopy.

  • towards an interoperable field spectroscopy Metadata Standard with extended support for marine specific applications
    Remote Sensing, 2015
    Co-Authors: B Rasaiah, C Bellman, T J Malthus, Simon D. Jones, Chris Roelfsema
    Abstract:

    This paper presents an approach to developing robust Metadata Standards for specific applications that serves to ensure a high level of reliability and interoperability for a spectroscopy dataset. The challenges of designing a Metadata Standard that meets the unique requirements of specific user communities are examined, including in situ measurement of reflectance underwater, using coral as a case in point. Metadata schema mappings from seven existing Metadata Standards demonstrate that they consistently fail to meet the needs of field spectroscopy scientists for general and specific applications (μ = 22%, σ = 32% conformance with the core Metadata requirements and μ = 19%, σ = 18% for the special case of a benthic (e.g., coral) reflectance Metadataset). Issues such as field measurement methods, instrument calibration, and data representativeness for marine field spectroscopy campaigns are investigated within the context of submerged benthic measurements. The implication of semantics and syntax for a robust and flexible Metadata Standard are also considered. A hybrid Standard that serves as a “best of breed” incorporating useful modules and parameters within the Standards is proposed. This paper is Part 3 in a series of papers in this journal, examining the issues central to a Metadata Standard for field spectroscopy datasets. The results presented in this paper are an important step towards field spectroscopy Metadata Standards that address the specific needs of field spectroscopy data stakeholders while facilitating dataset documentation, quality assurance, discoverability and data exchange within large-scale information sharing platforms.

  • towards a Metadata Standard for field spectroscopy
    2014
    Co-Authors: B Rasaiah
    Abstract:

    This thesis identifies the core components for a field spectroscopy Metadata Standard to facilitate discoverability, interoperability, reliability, quality assurance and extended life cycles for datasets being exchanged in a variety of data sharing platfo

  • Approaches to establishing a Metadata Standard for field spectroscopy datasets
    2013 IEEE International Geoscience and Remote Sensing Symposium - IGARSS, 2013
    Co-Authors: B Rasaiah, T J Malthus, Chris Bellman, Laurie Chisholm, John Gamon, Andreas Hueni, Alfredo Huete, Simon D. Jones, Stuart Phinn, Chris Roelfsema
    Abstract:

    There is an urgent need within the international remote sensing community to establish a Metadata Standard for field spectroscopy that ensures high quality, interoperable Metadata sets that can be archived and shared efficiently within Earth observation data sharing systems. Careful examination of all stages of Metadata collection and analysis can inform a robust Standard that is applicable to a range of field campaigns. This paper presents approaches towards a Standard that encompasses in situ Metadata collection and initiatives towards sharing Metadata within intelligent archiving systems.

  • IGARSS - Approaches to establishing a Metadata Standard for field spectroscopy datasets
    2013 IEEE International Geoscience and Remote Sensing Symposium - IGARSS, 2013
    Co-Authors: B Rasaiah, C Bellman, T J Malthus, John Gamon, Andreas Hueni, Alfredo Huete, Simon D. Jones, Laurie A. Chisholm, Stuart Phinn
    Abstract:

    There is an urgent need within the international remote sensing community to establish a Metadata Standard for field spectroscopy that ensures high quality, interoperable Metadata sets that can be archived and shared efficiently within Earth observation data sharing systems. Careful examination of all stages of Metadata collection and analysis can inform a robust Standard that is applicable to a range of field campaigns. This paper presents approaches towards a Standard that encompasses in situ Metadata collection and initiatives towards sharing Metadata within intelligent archiving systems.

T J Malthus - One of the best experts on this subject based on the ideXlab platform.

  • GSR - A novel Metadata Standard for in situ marine spectroscopy campaigns
    2020
    Co-Authors: B Rasaiah, Simon Jones, C Bellman, T J Malthus
    Abstract:

    Metadata are an important component in the cataloguing and analysis of in situ spectroscopy datasets because of their central role in identifying and quantifying the quality and reliability of spectral data and the products derived from them. This paper presents approaches to constructing a novel Metadata Standard for marine spectroscopy that serves to ensure a high level of reliability, integrity, and longevity for a spectroscopy dataset. Examined are the challenges presented by designing a Standard that meets the unique requirements of in situ marine spectroscopy datasets, including the special case of measuring reflectance for underwater coral targets. Issues such as field measurement methods, instrument calibration, and data representativeness are investigated. The proposed Metadata model incorporates expert panel recommendations that include Metadata protocols critical to all campaigns, and those that are restricted to campaigns for specific marine environments. The implication of semantics and syntax for a robust and flexible Metadata Standard are also considered. Approaches towards an operational and logistically viable implementation of a schema are discussed. This paper also proposes a way forward for adapting and enhancing current geospatial Metadata Standards to the unique requirements of field spectroscopy.

  • towards an interoperable field spectroscopy Metadata Standard with extended support for marine specific applications
    Remote Sensing, 2015
    Co-Authors: B Rasaiah, C Bellman, T J Malthus, Simon D. Jones, Chris Roelfsema
    Abstract:

    This paper presents an approach to developing robust Metadata Standards for specific applications that serves to ensure a high level of reliability and interoperability for a spectroscopy dataset. The challenges of designing a Metadata Standard that meets the unique requirements of specific user communities are examined, including in situ measurement of reflectance underwater, using coral as a case in point. Metadata schema mappings from seven existing Metadata Standards demonstrate that they consistently fail to meet the needs of field spectroscopy scientists for general and specific applications (μ = 22%, σ = 32% conformance with the core Metadata requirements and μ = 19%, σ = 18% for the special case of a benthic (e.g., coral) reflectance Metadataset). Issues such as field measurement methods, instrument calibration, and data representativeness for marine field spectroscopy campaigns are investigated within the context of submerged benthic measurements. The implication of semantics and syntax for a robust and flexible Metadata Standard are also considered. A hybrid Standard that serves as a “best of breed” incorporating useful modules and parameters within the Standards is proposed. This paper is Part 3 in a series of papers in this journal, examining the issues central to a Metadata Standard for field spectroscopy datasets. The results presented in this paper are an important step towards field spectroscopy Metadata Standards that address the specific needs of field spectroscopy data stakeholders while facilitating dataset documentation, quality assurance, discoverability and data exchange within large-scale information sharing platforms.

  • Approaches to establishing a Metadata Standard for field spectroscopy datasets
    2013 IEEE International Geoscience and Remote Sensing Symposium - IGARSS, 2013
    Co-Authors: B Rasaiah, T J Malthus, Chris Bellman, Laurie Chisholm, John Gamon, Andreas Hueni, Alfredo Huete, Simon D. Jones, Stuart Phinn, Chris Roelfsema
    Abstract:

    There is an urgent need within the international remote sensing community to establish a Metadata Standard for field spectroscopy that ensures high quality, interoperable Metadata sets that can be archived and shared efficiently within Earth observation data sharing systems. Careful examination of all stages of Metadata collection and analysis can inform a robust Standard that is applicable to a range of field campaigns. This paper presents approaches towards a Standard that encompasses in situ Metadata collection and initiatives towards sharing Metadata within intelligent archiving systems.

  • IGARSS - Approaches to establishing a Metadata Standard for field spectroscopy datasets
    2013 IEEE International Geoscience and Remote Sensing Symposium - IGARSS, 2013
    Co-Authors: B Rasaiah, C Bellman, T J Malthus, John Gamon, Andreas Hueni, Alfredo Huete, Simon D. Jones, Laurie A. Chisholm, Stuart Phinn
    Abstract:

    There is an urgent need within the international remote sensing community to establish a Metadata Standard for field spectroscopy that ensures high quality, interoperable Metadata sets that can be archived and shared efficiently within Earth observation data sharing systems. Careful examination of all stages of Metadata collection and analysis can inform a robust Standard that is applicable to a range of field campaigns. This paper presents approaches towards a Standard that encompasses in situ Metadata collection and initiatives towards sharing Metadata within intelligent archiving systems.

  • a novel Metadata Standard for in situ marine spectroscopy campaigns
    GSR_2, 2012
    Co-Authors: B Rasaiah, Simon Jones, C Bellman, T J Malthus
    Abstract:

    Metadata are an important component in the cataloguing and analysis of in situ spectroscopy datasets because of their central role in identifying and quantifying the quality and reliability of spectral data and the products derived from them. This paper presents approaches to constructing a novel Metadata Standard for marine spectroscopy that serves to ensure a high level of reliability, integrity, and longevity for a spectroscopy dataset. Examined are the challenges presented by designing a Standard that meets the unique requirements of in situ marine spectroscopy datasets, including the special case of measuring reflectance for underwater coral targets. Issues such as field measurement methods, instrument calibration, and data representativeness are investigated. The proposed Metadata model incorporates expert panel recommendations that include Metadata protocols critical to all campaigns, and those that are restricted to campaigns for specific marine environments. The implication of semantics and syntax for a robust and flexible Metadata Standard are also considered. Approaches towards an operational and logistically viable implementation of a schema are discussed. This paper also proposes a way forward for adapting and enhancing current geospatial Metadata Standards to the unique requirements of field spectroscopy.

Chris Roelfsema - One of the best experts on this subject based on the ideXlab platform.

  • towards an interoperable field spectroscopy Metadata Standard with extended support for marine specific applications
    Remote Sensing, 2015
    Co-Authors: B Rasaiah, C Bellman, T J Malthus, Simon D. Jones, Chris Roelfsema
    Abstract:

    This paper presents an approach to developing robust Metadata Standards for specific applications that serves to ensure a high level of reliability and interoperability for a spectroscopy dataset. The challenges of designing a Metadata Standard that meets the unique requirements of specific user communities are examined, including in situ measurement of reflectance underwater, using coral as a case in point. Metadata schema mappings from seven existing Metadata Standards demonstrate that they consistently fail to meet the needs of field spectroscopy scientists for general and specific applications (μ = 22%, σ = 32% conformance with the core Metadata requirements and μ = 19%, σ = 18% for the special case of a benthic (e.g., coral) reflectance Metadataset). Issues such as field measurement methods, instrument calibration, and data representativeness for marine field spectroscopy campaigns are investigated within the context of submerged benthic measurements. The implication of semantics and syntax for a robust and flexible Metadata Standard are also considered. A hybrid Standard that serves as a “best of breed” incorporating useful modules and parameters within the Standards is proposed. This paper is Part 3 in a series of papers in this journal, examining the issues central to a Metadata Standard for field spectroscopy datasets. The results presented in this paper are an important step towards field spectroscopy Metadata Standards that address the specific needs of field spectroscopy data stakeholders while facilitating dataset documentation, quality assurance, discoverability and data exchange within large-scale information sharing platforms.

  • Approaches to establishing a Metadata Standard for field spectroscopy datasets
    2013 IEEE International Geoscience and Remote Sensing Symposium - IGARSS, 2013
    Co-Authors: B Rasaiah, T J Malthus, Chris Bellman, Laurie Chisholm, John Gamon, Andreas Hueni, Alfredo Huete, Simon D. Jones, Stuart Phinn, Chris Roelfsema
    Abstract:

    There is an urgent need within the international remote sensing community to establish a Metadata Standard for field spectroscopy that ensures high quality, interoperable Metadata sets that can be archived and shared efficiently within Earth observation data sharing systems. Careful examination of all stages of Metadata collection and analysis can inform a robust Standard that is applicable to a range of field campaigns. This paper presents approaches towards a Standard that encompasses in situ Metadata collection and initiatives towards sharing Metadata within intelligent archiving systems.

C Bellman - One of the best experts on this subject based on the ideXlab platform.

  • GSR - A novel Metadata Standard for in situ marine spectroscopy campaigns
    2020
    Co-Authors: B Rasaiah, Simon Jones, C Bellman, T J Malthus
    Abstract:

    Metadata are an important component in the cataloguing and analysis of in situ spectroscopy datasets because of their central role in identifying and quantifying the quality and reliability of spectral data and the products derived from them. This paper presents approaches to constructing a novel Metadata Standard for marine spectroscopy that serves to ensure a high level of reliability, integrity, and longevity for a spectroscopy dataset. Examined are the challenges presented by designing a Standard that meets the unique requirements of in situ marine spectroscopy datasets, including the special case of measuring reflectance for underwater coral targets. Issues such as field measurement methods, instrument calibration, and data representativeness are investigated. The proposed Metadata model incorporates expert panel recommendations that include Metadata protocols critical to all campaigns, and those that are restricted to campaigns for specific marine environments. The implication of semantics and syntax for a robust and flexible Metadata Standard are also considered. Approaches towards an operational and logistically viable implementation of a schema are discussed. This paper also proposes a way forward for adapting and enhancing current geospatial Metadata Standards to the unique requirements of field spectroscopy.

  • towards an interoperable field spectroscopy Metadata Standard with extended support for marine specific applications
    Remote Sensing, 2015
    Co-Authors: B Rasaiah, C Bellman, T J Malthus, Simon D. Jones, Chris Roelfsema
    Abstract:

    This paper presents an approach to developing robust Metadata Standards for specific applications that serves to ensure a high level of reliability and interoperability for a spectroscopy dataset. The challenges of designing a Metadata Standard that meets the unique requirements of specific user communities are examined, including in situ measurement of reflectance underwater, using coral as a case in point. Metadata schema mappings from seven existing Metadata Standards demonstrate that they consistently fail to meet the needs of field spectroscopy scientists for general and specific applications (μ = 22%, σ = 32% conformance with the core Metadata requirements and μ = 19%, σ = 18% for the special case of a benthic (e.g., coral) reflectance Metadataset). Issues such as field measurement methods, instrument calibration, and data representativeness for marine field spectroscopy campaigns are investigated within the context of submerged benthic measurements. The implication of semantics and syntax for a robust and flexible Metadata Standard are also considered. A hybrid Standard that serves as a “best of breed” incorporating useful modules and parameters within the Standards is proposed. This paper is Part 3 in a series of papers in this journal, examining the issues central to a Metadata Standard for field spectroscopy datasets. The results presented in this paper are an important step towards field spectroscopy Metadata Standards that address the specific needs of field spectroscopy data stakeholders while facilitating dataset documentation, quality assurance, discoverability and data exchange within large-scale information sharing platforms.

  • IGARSS - Approaches to establishing a Metadata Standard for field spectroscopy datasets
    2013 IEEE International Geoscience and Remote Sensing Symposium - IGARSS, 2013
    Co-Authors: B Rasaiah, C Bellman, T J Malthus, John Gamon, Andreas Hueni, Alfredo Huete, Simon D. Jones, Laurie A. Chisholm, Stuart Phinn
    Abstract:

    There is an urgent need within the international remote sensing community to establish a Metadata Standard for field spectroscopy that ensures high quality, interoperable Metadata sets that can be archived and shared efficiently within Earth observation data sharing systems. Careful examination of all stages of Metadata collection and analysis can inform a robust Standard that is applicable to a range of field campaigns. This paper presents approaches towards a Standard that encompasses in situ Metadata collection and initiatives towards sharing Metadata within intelligent archiving systems.

  • a novel Metadata Standard for in situ marine spectroscopy campaigns
    GSR_2, 2012
    Co-Authors: B Rasaiah, Simon Jones, C Bellman, T J Malthus
    Abstract:

    Metadata are an important component in the cataloguing and analysis of in situ spectroscopy datasets because of their central role in identifying and quantifying the quality and reliability of spectral data and the products derived from them. This paper presents approaches to constructing a novel Metadata Standard for marine spectroscopy that serves to ensure a high level of reliability, integrity, and longevity for a spectroscopy dataset. Examined are the challenges presented by designing a Standard that meets the unique requirements of in situ marine spectroscopy datasets, including the special case of measuring reflectance for underwater coral targets. Issues such as field measurement methods, instrument calibration, and data representativeness are investigated. The proposed Metadata model incorporates expert panel recommendations that include Metadata protocols critical to all campaigns, and those that are restricted to campaigns for specific marine environments. The implication of semantics and syntax for a robust and flexible Metadata Standard are also considered. Approaches towards an operational and logistically viable implementation of a schema are discussed. This paper also proposes a way forward for adapting and enhancing current geospatial Metadata Standards to the unique requirements of field spectroscopy.

Xiangyun Feng - One of the best experts on this subject based on the ideXlab platform.