swarmb-orb-lp.xml 7.83 KB
<?xml version="1.0" encoding="UTF-8"?>
<Spase xmlns="http://www.spase-group.org/data/schema" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="http://www.spase-group.org/data/schema http://www.spase-group.org/data/schema/spase-2.4.1.xsd">
  <Version>2.4.1</Version>
  <NumericalData>
    <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/SWARM-B/Ephemeris/swarmb-orb-lp</ResourceID>
    <ResourceHeader>
      <ResourceName>lp extended dataset</ResourceName>
      <AlternateName>Swarm-B orbital information from EFI / LP extended dataset</AlternateName>
      <ReleaseDate>2024-09-29T23:37:17Z</ReleaseDate>
      <Description>Swarm-B orbital information from EFI / LP extended dataset</Description>
      <Contact>
        <PersonID>spase://CNES/Person/CDPP-AMDA/S.Buchert</PersonID>
        <Role>Scientist</Role>
      </Contact>
      <InformationURL>
        <Name>Dataset Description</Name>
        <URL>ftp://swarm-diss.eo.esa.int/Advanced/Plasma_Data/2_Hz_Langmuir_Probe_Extended_Dataset/SW-RN-IRF-GS-005_Extended_LP_Data_Probes.ZIP</URL>
      </InformationURL>
      <Association>
        <AssociationID>swarmb-orb-05</AssociationID>
        <AssociationType>PartOf</AssociationType>
        <Note>0.5 s</Note>
      </Association>
    </ResourceHeader>
    <AccessInformation>
      <RepositoryID>spase://SMWG/Repository/CDPP/AMDA</RepositoryID>
      <Availability>Online</Availability>
      <AccessRights>Open</AccessRights>
      <AccessURL>
        <Name>CDPP/AMDA HAPI Server</Name>
        <URL>https://amda.irap.omp.eu/service/hapi</URL>
        <Style>HAPI</Style>
        <ProductKey>swarmb-orb-lp</ProductKey>
        <Description>Web Service to this product using the HAPI interface.</Description>
      </AccessURL>
      <Format>CSV</Format>
      <Acknowledgement>Thank you for acknowledging the use of AMDA in publications with wording like "Data analysis was performed with the AMDA science analysis system provided by the Centre de Données de la Physique des Plasmas (CDPP) supported by CNRS, CNES, Observatoire de Paris and Université Paul Sabatier, Toulouse". See the Rules of the road at https://amda.cdpp.eu/help/policy.html . Please acknowledge the Data Providers.</Acknowledgement>
    </AccessInformation>
    <AccessInformation>
      <RepositoryID>spase://SMWG/Repository/CDPP/AMDA</RepositoryID>
      <Availability>Online</Availability>
      <AccessRights>Open</AccessRights>
      <AccessURL>
        <Name>CDPP/AMDA Web application</Name>
        <URL>https://amda.cdpp.eu</URL>
        <Description>Access to Data via CDPP/AMDA Web application.</Description>
      </AccessURL>
      <Format>CSV</Format>
      <Format>VOTable</Format>
      <Format>CDF</Format>
      <Format>PNG</Format>
      <Acknowledgement>Thank you for acknowledging the use of AMDA in publications with wording like "Data analysis was performed with the AMDA science analysis system provided by the Centre de Données de la Physique des Plasmas (CDPP) supported by CNRS, CNES, Observatoire de Paris and Université Paul Sabatier, Toulouse". See the Rules of the road at https://amda.cdpp.eu/help/policy.html . Please acknowledge the Data Providers.</Acknowledgement>
    </AccessInformation>
    <ProviderName>ftp://swarm-diss.eo.esa.int</ProviderName>
    <ProviderResourceName>Extended Set of Swarm Langmuir Probe Data</ProviderResourceName>
    <InstrumentID>spase://CNES/Instrument/CDPP-AMDA/SWARM-B/Ephemeris</InstrumentID>
    <MeasurementType>Ephemeris</MeasurementType>
    <TemporalDescription>
      <TimeSpan>
        <StartDate>2013-12-02T11:44:45Z</StartDate>
        <StopDate>2024-09-11T23:59:59Z</StopDate>
      </TimeSpan>
      <Cadence>PT0.5S</Cadence>
    </TemporalDescription>
    <ObservedRegion>Earth.Magnetosphere</ObservedRegion>
    <Caveats>
          * h_wgs84 - Height above reference ellipsoid, WGS84
          * lon_wgs84 - Geodetic longitude, WGS84         
          * lat_wgs84 - Geodetic latitude, WGS84
          * solar azimuth - Solar Azimuth in Earth frame, north is 0 deg 
          * solar time - Apparent Solar Time
          * dip lat - Quasi-dipole latitude
          * dip lon - Quasi-dipole longitude
          * mlt - Magnetic local time based on quasi-dipole
        </Caveats>
    <Parameter>
      <Name>h_wgs84</Name>
      <ParameterKey>swb_h_wgs84</ParameterKey>
      <Description>Height above reference ellipsoid, WGS84</Description>
      <Units>km</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
      </RenderingHints>
      <Support>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>lon_wgs84</Name>
      <ParameterKey>swb_lon_wgs84</ParameterKey>
      <Description>Geodetic longitude, WGS84</Description>
      <Units>deg</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
      </RenderingHints>
      <Support>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>lat_wgs84</Name>
      <ParameterKey>swb_lat_wgs84</ParameterKey>
      <Description>Geodetic latitude, WGS84</Description>
      <Units>deg</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
      </RenderingHints>
      <Support>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>sza</Name>
      <ParameterKey>swb_sza</ParameterKey>
      <Description>Solar Zenith Angle</Description>
      <Units>deg</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
      </RenderingHints>
      <Support>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>solar azimuth</Name>
      <ParameterKey>swb_saz</ParameterKey>
      <Description>Solar Azimuth in Earth frame, north is 0 deg</Description>
      <Units>deg</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
      </RenderingHints>
      <Support>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>solar time</Name>
      <ParameterKey>swb_st</ParameterKey>
      <Description>Apparent Solar Time</Description>
      <Units>hours</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
      </RenderingHints>
      <Support>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>dip lat</Name>
      <ParameterKey>swb_diplat</ParameterKey>
      <Description>Quasi-dipole latitude</Description>
      <Units>deg</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
      </RenderingHints>
      <Support>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>dip lon</Name>
      <ParameterKey>swb_diplon</ParameterKey>
      <Description>Quasi-dipole longitude</Description>
      <Units>deg</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
      </RenderingHints>
      <Support>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>mlat</Name>
      <ParameterKey>swb_mlat</ParameterKey>
      <Description>Magnetic latitude</Description>
      <Units>deg</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
      </RenderingHints>
      <Support>
        <SupportQuantity>Positional</SupportQuantity>
      </Support>
    </Parameter>
    <Parameter>
      <Name>mlt</Name>
      <ParameterKey>swb_mlt</ParameterKey>
      <Description>Magnetic local time based on quasi-dipole</Description>
      <Units>hours</Units>
      <RenderingHints>
        <DisplayType>TimeSeries</DisplayType>
      </RenderingHints>
      <Support>
        <SupportQuantity>Temporal</SupportQuantity>
      </Support>
    </Parameter>
  </NumericalData>
</Spase>