Commit 01d161cb1f382a72fc8b02302d7aad1a68427bff
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Merge branch 'amdadev' of https://gitlab.irap.omp.eu/CDPP/CNES into amdadev
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Instrument/CDPP-AMDA/Helios1/AUX.xml renamed to Instrument/CDPP-AMDA/Helios1/AUXILLIARY.xml
... | ... | @@ -2,7 +2,7 @@ |
2 | 2 | <Spase xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://www.spase-group.org/data/schema" xsi:schemaLocation="http://www.spase-group.org/data/schema http://amda.irap.omp.eu/public/schemas/spase-2_3_1.xsd"> |
3 | 3 | <Version>2.3.1</Version> |
4 | 4 | <Instrument> |
5 | - <ResourceID>spase://CNES/Instrument/CDPP-AMDA/Helios1/AUX</ResourceID> | |
5 | + <ResourceID>spase://CNES/Instrument/CDPP-AMDA/Helios1/AUXILLIARY</ResourceID> | |
6 | 6 | <ResourceHeader> |
7 | 7 | <ResourceName>AUX</ResourceName> |
8 | 8 | <AlternateName> Helios corefit data product : auxilliary orbital data</AlternateName> | ... | ... |
Instrument/CDPP-AMDA/Helios2/AUX.xml renamed to Instrument/CDPP-AMDA/Helios2/AUXILLIARY.xml
... | ... | @@ -2,7 +2,7 @@ |
2 | 2 | <Spase xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://www.spase-group.org/data/schema" xsi:schemaLocation="http://www.spase-group.org/data/schema http://amda.irap.omp.eu/public/schemas/spase-2_3_1.xsd"> |
3 | 3 | <Version>2.3.1</Version> |
4 | 4 | <Instrument> |
5 | - <ResourceID>spase://CNES/Instrument/CDPP-AMDA/Helios2/AUX</ResourceID> | |
5 | + <ResourceID>spase://CNES/Instrument/CDPP-AMDA/Helios2/AUXILLIARY</ResourceID> | |
6 | 6 | <ResourceHeader> |
7 | 7 | <ResourceName>AUX</ResourceName> |
8 | 8 | <AlternateName> Helios corefit data product : auxilliary orbital data</AlternateName> | ... | ... |
Instrument/CDPP-AMDA/Rosetta/AUX.xml renamed to Instrument/CDPP-AMDA/Rosetta/AUXILLIARY.xml
... | ... | @@ -2,7 +2,7 @@ |
2 | 2 | <Spase xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xmlns="http://www.spase-group.org/data/schema" xsi:schemaLocation="http://www.spase-group.org/data/schema http://amda.irap.omp.eu/public/schemas/spase-2_3_1.xsd"> |
3 | 3 | <Version>2.3.1</Version> |
4 | 4 | <Instrument> |
5 | - <ResourceID>spase://CNES/Instrument/CDPP-AMDA/Rosetta/AUX</ResourceID> | |
5 | + <ResourceID>spase://CNES/Instrument/CDPP-AMDA/Rosetta/AUXILLIARY</ResourceID> | |
6 | 6 | <ResourceHeader> |
7 | 7 | <ResourceName>AUX</ResourceName> |
8 | 8 | <AlternateName>Orbit/Attitude Info</AlternateName> | ... | ... |
... | ... | @@ -0,0 +1,27 @@ |
1 | +<?xml version='1.0' encoding='UTF-8'?> | |
2 | +<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://amda.irap.omp.eu/public/schemas/spase-2_3_1.xsd"> | |
3 | + <Version>2.3.1</Version> | |
4 | + <Instrument> | |
5 | + <ResourceID>spase://CNES/Instrument/CDPP-AMDA/SOHO/ERNE</ResourceID> | |
6 | + <ResourceHeader> | |
7 | + <ResourceName>ERNE</ResourceName> | |
8 | + <AlternateName>Energetic and Relativistic Nuclei and Electrons</AlternateName> | |
9 | + <ReleaseDate>2019-05-05T12:34:56Z</ReleaseDate> | |
10 | + <Description>The Energetic and Relativistic Nuclei and Electrons (ERNE) experiment will investigate the solar atmosphere by detecting particles produced in various kinds of energy release processes. Measurements will cover the particle flux at quiet times, solar particle events, flux enhancement due to particle acceleration by interplanetary shocks, and solar modulation of galactic cosmic rays. The instrument will measure the energy spectra of elements in the range Z = 1--30, and will also measure the abundance ratios of isotopes as well as the anisotropy of the particle flux. Isotopic resolution varies with particle type and energy; for carbon in the 20--140 MeV/nucleon range the resolution is 0.25 amu. The instrument uses two separate particle telescopes, LED and HED, where a particle penetrates through active layers and the energy deposited in each layer is measured. By comparing to a theoretical energy loss, the particle type and energy can be determined. The LED (Low Energy Detector) consists of an outer circular solid state detector, covered by a thin (1 mg/cm**2) kapton foil, an inner detector, and an anticoincidence detector. The HED (High Energy Detector) uses silicon detectors and scintillation detectors read by photo diodes. The outer two detectors are mutually orthogonal, single-sided strip detectors each, thus forming a pair of two-dimensional position-sensitive detectors. Following these are additional silicon detectors and CsI(Tl) and BGO scintillators. The LED has a field of view (FOV) of 64 degrees and identifies isotopes from H to Ne. Its energy range is 1.4--12 MeV/nucleon for protons and helium, 2.1--46 MeV/nucleon for other nuclei. HED has a 120 degree FOV and its energy range is 12--110 MeV/nucleon for protons and helium, 25--540 MeV/nucleon for other nuclei, and 5--60 MeV for electrons. This information is from the paper ``Energetic Particle Analyser ERNE,'' by J. Torsti et al. (Proceedings of the First SOHO Workshop, ESA SP-348, p. 47-50, November 1992). | |
11 | +</Description> | |
12 | + <Contact> | |
13 | + <PersonID>spase://SMWG/Person/Jarmo.Torsti</PersonID> | |
14 | + <Role>PrincipalInvestigator</Role> | |
15 | + </Contact> | |
16 | + <InformationURL> | |
17 | + <Name>NSSDC's Master Catalog</Name> | |
18 | + <URL>https://nssdc.gsfc.nasa.gov/nmc/experiment/display.action?id=1995-065A&ex=9</URL> | |
19 | + <Description>Information about the Energetic and Relativistic Nuclei and Electrons (ERNE) experiment on the SOHO mission. | |
20 | +</Description> | |
21 | + </InformationURL> | |
22 | + </ResourceHeader> | |
23 | + <InstrumentType>EnergeticParticleInstrument</InstrumentType> | |
24 | + <InvestigationName>Energetic and Relativistic Nuclei and Electrons (ERNE) on SOHO</InvestigationName> | |
25 | + <ObservatoryID>spase://CNES/Observatory/CDPP-AMDA/SOHO</ObservatoryID> | |
26 | + </Instrument> | |
27 | +</Spase> | ... | ... |
NumericalData/CDPP-AMDA/Cluster/Cluster1/Ephemeris/clust1-orb-all.xml
... | ... | @@ -134,7 +134,7 @@ |
134 | 134 | </Parameter> |
135 | 135 | <Parameter> |
136 | 136 | <Name>mlt</Name> |
137 | - <ParameterKey>maglib_mlt_c1_xyz_gsm</ParameterKey> | |
137 | + <ParameterKey>maglib_mlt_1_c1</ParameterKey> | |
138 | 138 | <Description>Magnetic local time</Description> |
139 | 139 | <Ucd/> |
140 | 140 | <Units>hours</Units> |
... | ... | @@ -145,7 +145,7 @@ |
145 | 145 | </Parameter> |
146 | 146 | <Parameter> |
147 | 147 | <Name>InvLat</Name> |
148 | - <ParameterKey>maglib_invlat_c1_xyz_gsm</ParameterKey> | |
148 | + <ParameterKey>maglib_invlat_1_c1</ParameterKey> | |
149 | 149 | <Description>Invariant latitude</Description> |
150 | 150 | <Ucd/> |
151 | 151 | <Units>degrees</Units> |
... | ... | @@ -156,7 +156,7 @@ |
156 | 156 | </Parameter> |
157 | 157 | <Parameter> |
158 | 158 | <Name>L param</Name> |
159 | - <ParameterKey>maglib_lparam_c1_xyz_gsm</ParameterKey> | |
159 | + <ParameterKey>maglib_lparam_1_c1</ParameterKey> | |
160 | 160 | <Description>Galperin L parameter</Description> |
161 | 161 | <Ucd/> |
162 | 162 | <Units></Units> | ... | ... |
NumericalData/CDPP-AMDA/Cluster/Cluster2/Ephemeris/clust2-orb-all.xml
... | ... | @@ -134,7 +134,7 @@ |
134 | 134 | </Parameter> |
135 | 135 | <Parameter> |
136 | 136 | <Name>mlt</Name> |
137 | - <ParameterKey>maglib_mlt_c2_xyz_gsm</ParameterKey> | |
137 | + <ParameterKey>maglib_mlt_1_c2</ParameterKey> | |
138 | 138 | <Description>Magnetic local time</Description> |
139 | 139 | <Ucd/> |
140 | 140 | <Units>hours</Units> |
... | ... | @@ -145,7 +145,7 @@ |
145 | 145 | </Parameter> |
146 | 146 | <Parameter> |
147 | 147 | <Name>InvLat</Name> |
148 | - <ParameterKey>maglib_invlat_c2_xyz_gsm</ParameterKey> | |
148 | + <ParameterKey>maglib_invlat_1_c2</ParameterKey> | |
149 | 149 | <Description>Invariant latitude</Description> |
150 | 150 | <Ucd/> |
151 | 151 | <Units>degrees</Units> |
... | ... | @@ -156,7 +156,7 @@ |
156 | 156 | </Parameter> |
157 | 157 | <Parameter> |
158 | 158 | <Name>L param</Name> |
159 | - <ParameterKey>maglib_lparam_c2_xyz_gsm</ParameterKey> | |
159 | + <ParameterKey>maglib_lparam_1_c2</ParameterKey> | |
160 | 160 | <Description>Galperin L parameter</Description> |
161 | 161 | <Ucd/> |
162 | 162 | <Units></Units> | ... | ... |
NumericalData/CDPP-AMDA/Cluster/Cluster3/Ephemeris/clust3-orb-all.xml
... | ... | @@ -134,7 +134,7 @@ |
134 | 134 | </Parameter> |
135 | 135 | <Parameter> |
136 | 136 | <Name>mlt</Name> |
137 | - <ParameterKey>maglib_mlt_c3_xyz_gsm</ParameterKey> | |
137 | + <ParameterKey>maglib_mlt_1_c3</ParameterKey> | |
138 | 138 | <Description>Magnetic local time</Description> |
139 | 139 | <Ucd/> |
140 | 140 | <Units>hours</Units> |
... | ... | @@ -145,7 +145,7 @@ |
145 | 145 | </Parameter> |
146 | 146 | <Parameter> |
147 | 147 | <Name>InvLat</Name> |
148 | - <ParameterKey>maglib_invlat_c3_xyz_gsm</ParameterKey> | |
148 | + <ParameterKey>maglib_invlat_1_c3</ParameterKey> | |
149 | 149 | <Description>Invariant latitude</Description> |
150 | 150 | <Ucd/> |
151 | 151 | <Units>degrees</Units> |
... | ... | @@ -156,7 +156,7 @@ |
156 | 156 | </Parameter> |
157 | 157 | <Parameter> |
158 | 158 | <Name>L param</Name> |
159 | - <ParameterKey>maglib_lparam_c3_xyz_gsm</ParameterKey> | |
159 | + <ParameterKey>maglib_lparam_1_c3</ParameterKey> | |
160 | 160 | <Description>Galperin L parameter</Description> |
161 | 161 | <Ucd/> |
162 | 162 | <Units></Units> | ... | ... |
NumericalData/CDPP-AMDA/Cluster/Cluster4/Ephemeris/clust4-orb-all.xml
... | ... | @@ -128,7 +128,7 @@ |
128 | 128 | </Parameter> |
129 | 129 | <Parameter> |
130 | 130 | <Name>mlt</Name> |
131 | - <ParameterKey>maglib_mlt_c4_xyz_gsm</ParameterKey> | |
131 | + <ParameterKey>maglib_mlt_1_c4</ParameterKey> | |
132 | 132 | <Description>Magnetic local time</Description> |
133 | 133 | <Ucd/> |
134 | 134 | <Units>hours</Units> |
... | ... | @@ -139,7 +139,7 @@ |
139 | 139 | </Parameter> |
140 | 140 | <Parameter> |
141 | 141 | <Name>InvLat</Name> |
142 | - <ParameterKey>maglib_invlat_c4_xyz_gsm</ParameterKey> | |
142 | + <ParameterKey>maglib_invlat_1_c4</ParameterKey> | |
143 | 143 | <Description>Invariant latitude</Description> |
144 | 144 | <Ucd/> |
145 | 145 | <Units>degrees</Units> |
... | ... | @@ -150,7 +150,7 @@ |
150 | 150 | </Parameter> |
151 | 151 | <Parameter> |
152 | 152 | <Name>L param</Name> |
153 | - <ParameterKey>maglib_lparam_c4_xyz_gsm</ParameterKey> | |
153 | + <ParameterKey>maglib_lparam_1_c4</ParameterKey> | |
154 | 154 | <Description>Galperin L parameter</Description> |
155 | 155 | <Ucd/> |
156 | 156 | <Units></Units> | ... | ... |
NumericalData/CDPP-AMDA/Helios1/AUX/helios1-aux-corefit.xml renamed to NumericalData/CDPP-AMDA/Helios1/AUXILLIARY/helios1-aux-corefit.xml
... | ... | @@ -2,7 +2,7 @@ |
2 | 2 | <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://amda.irap.omp.eu/public/schemas/spase-2_3_1.xsd"> |
3 | 3 | <Version>2.3.1</Version> |
4 | 4 | <NumericalData> |
5 | - <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/Helios1/AUX/helios1-aux-corefit</ResourceID> | |
5 | + <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/Helios1/AUXILLIARY/helios1-aux-corefit</ResourceID> | |
6 | 6 | <ResourceHeader> |
7 | 7 | <ResourceName>corefit : 40s</ResourceName> |
8 | 8 | <AlternateName>Helios corefit data product : auxilliary</AlternateName> |
... | ... | @@ -34,7 +34,7 @@ |
34 | 34 | </AccessInformation> |
35 | 35 | <ProviderName>Helios Data Archive</ProviderName> |
36 | 36 | <ProviderResourceName>Helios corefit data product</ProviderResourceName> |
37 | - <InstrumentID>spase://CNES/Instrument/CDPP-AMDA/Helios1/AUX</InstrumentID> | |
37 | + <InstrumentID>spase://CNES/Instrument/CDPP-AMDA/Helios1/AUXILLIARY</InstrumentID> | |
38 | 38 | <MeasurementType/> |
39 | 39 | <TemporalDescription> |
40 | 40 | <TimeSpan> | ... | ... |
NumericalData/CDPP-AMDA/Helios2/AUX/helios2-aux-corefit.xml renamed to NumericalData/CDPP-AMDA/Helios2/AUXILLIARY/helios2-aux-corefit.xml
... | ... | @@ -2,7 +2,7 @@ |
2 | 2 | <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://amda.irap.omp.eu/public/schemas/spase-2_3_1.xsd"> |
3 | 3 | <Version>2.3.1</Version> |
4 | 4 | <NumericalData> |
5 | - <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/Helios2/AUX/helios2-aux-corefit</ResourceID> | |
5 | + <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/Helios2/AUXILLIARY/helios2-aux-corefit</ResourceID> | |
6 | 6 | <ResourceHeader> |
7 | 7 | <ResourceName>corefit : 40s</ResourceName> |
8 | 8 | <AlternateName>Helios corefit data product : auxilliary</AlternateName> |
... | ... | @@ -33,7 +33,7 @@ |
33 | 33 | </AccessInformation> |
34 | 34 | <ProviderName>Helios Data Archive</ProviderName> |
35 | 35 | <ProviderResourceName>Helios corefit data product</ProviderResourceName> |
36 | - <InstrumentID>spase://CNES/Instrument/CDPP-AMDA/Helios2/AUX</InstrumentID> | |
36 | + <InstrumentID>spase://CNES/Instrument/CDPP-AMDA/Helios2/AUXILLIARY</InstrumentID> | |
37 | 37 | <MeasurementType/> |
38 | 38 | <TemporalDescription> |
39 | 39 | <TimeSpan> | ... | ... |
NumericalData/CDPP-AMDA/MAVEN/EUV/mvn-euv-mod.xml
... | ... | @@ -11,7 +11,7 @@ |
11 | 11 | |
12 | 12 | This dataset contains solar irradiance spectra in 1-nm bins from 0-190 nm. |
13 | 13 | The spectra are generated based upon the Flare Irradiance Spectra Model - |
14 | - Mars (FISM-M) using the EUV calibrated band irrandiance and interpolated | |
14 | + Mars (FISM-M) using the EUV calibrated band irradiance and interpolated | |
15 | 15 | Earth-based solar indices and measurements as proxies. |
16 | 16 | </Description> |
17 | 17 | <Acknowledgement> Principal Investigator : Frank Eparvier, LASP, Colorado |
... | ... | @@ -21,6 +21,12 @@ |
21 | 21 | <Role>PrincipalInvestigator</Role> |
22 | 22 | </Contact> |
23 | 23 | <InformationURL> |
24 | + <Name>Flare Irradiance Spectral Model (FISM): Daily component algorithms and results - Chamberlin, Phillip C.; Woods, Thomas N.; Eparvier, Francis G. - 2017</Name> | |
25 | + <URL>https://doi.org/10.1029/2007SW000316</URL> | |
26 | + <Description> | |
27 | + </Description> | |
28 | + </InformationURL> | |
29 | + <InformationURL> | |
24 | 30 | <Name>EUV web page, Summary sheet </Name> |
25 | 31 | <URL>http://lasp.colorado.edu/home/maven/science/instrument-package/lpw/extreme-ultraviolet-euv-monitor/</URL> |
26 | 32 | <Description> | ... | ... |
NumericalData/CDPP-AMDA/Rosetta/AUX/ros-aux-all.xml renamed to NumericalData/CDPP-AMDA/Rosetta/AUXILLIARY/ros-aux-all.xml
... | ... | @@ -2,7 +2,7 @@ |
2 | 2 | <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://amda.irap.omp.eu/public/schemas/spase-2_3_1.xsd"> |
3 | 3 | <Version>2.3.1</Version> |
4 | 4 | <NumericalData> |
5 | - <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/Rosetta/AUX/ros-aux-all</ResourceID> | |
5 | + <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/Rosetta/AUXILLIARY/ros-aux-all</ResourceID> | |
6 | 6 | <ResourceHeader> |
7 | 7 | <ResourceName>Orbit/Attitude</ResourceName> |
8 | 8 | <ReleaseDate>2017-03-12T10:48:29Z</ReleaseDate> |
... | ... | @@ -30,7 +30,7 @@ |
30 | 30 | <Acknowledgement/> |
31 | 31 | </AccessInformation> |
32 | 32 | <ProviderName/> |
33 | - <InstrumentID>spase://CNES/Instrument/CDPP-AMDA/Rosetta/AUX</InstrumentID> | |
33 | + <InstrumentID>spase://CNES/Instrument/CDPP-AMDA/Rosetta/AUXILLIARY</InstrumentID> | |
34 | 34 | <MeasurementType>Ephemeris</MeasurementType> |
35 | 35 | <TemporalDescription> |
36 | 36 | <TimeSpan> | ... | ... |
... | ... | @@ -0,0 +1,165 @@ |
1 | +<?xml version='1.0' encoding='UTF-8'?> | |
2 | +<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://amda.irap.omp.eu/public/schemas/spase-2_3_1.xsd"> | |
3 | + <Version>2.3.1</Version> | |
4 | + <NumericalData> | |
5 | + <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/SOHO/ERNE/soho-erne-led</ResourceID> | |
6 | + <ResourceHeader> | |
7 | + <ResourceName>LED</ResourceName> | |
8 | + <AlternateName>LED detector</AlternateName> | |
9 | + <AlternateName>Low Energy Detector</AlternateName> | |
10 | + <ReleaseDate>2021-11-09T00:00:00Z</ReleaseDate> | |
11 | + <Description>Low Energy Detector is a two-layer semiconductor (silicon) detector, with | |
12 | +an anticoincidence (AC) shield at the bottom. The upper layer consist of 7 | |
13 | +segments (D11-D17). The common lower layer is called D2.</Description> | |
14 | + <Contact> | |
15 | + <PersonID>spase://CNES/Person/Rami.Vainio</PersonID> | |
16 | + <Role>DataProducer</Role> | |
17 | + </Contact> | |
18 | + <Contact> | |
19 | + <PersonID>spase://CNES/Person/Esa.Riihonen</PersonID> | |
20 | + <Role>DataProducer</Role> | |
21 | + </Contact> | |
22 | + <InformationURL> | |
23 | + <Name>SOHO/ERNE Export data archive</Name> | |
24 | + <URL>https://srl.utu.fi/export/</URL> | |
25 | + </InformationURL> | |
26 | + </ResourceHeader> | |
27 | + <AccessInformation> | |
28 | + <RepositoryID>spase://SMWG/Repository/CNES/CDPP-AMDA</RepositoryID> | |
29 | + <Availability>Online</Availability> | |
30 | + <AccessRights>Open</AccessRights> | |
31 | + <AccessURL> | |
32 | + <URL>http://amda.cdpp.eu</URL> | |
33 | + </AccessURL> | |
34 | + <Format>NetCDF</Format> | |
35 | + </AccessInformation> | |
36 | + <ProcessingLevel>Calibrated</ProcessingLevel> | |
37 | + <ProviderName>https://srl.utu.fi/export/</ProviderName> | |
38 | + <InstrumentID>spase://CNES/Instrument/CDPP-AMDA/SOHO/ERNE</InstrumentID> | |
39 | + <MeasurementType>EnergeticParticles</MeasurementType> | |
40 | + <Parameter> | |
41 | + <Name>intensity p</Name> | |
42 | + <ParameterKey>soho_erne_ledp</ParameterKey> | |
43 | + <Units>1/(cm**2 sr s MeV)</Units> | |
44 | + <Structure> | |
45 | + <Size>10</Size> | |
46 | + <Element> | |
47 | + <Name>1.3 - 1.6 MeV</Name> | |
48 | + <Index>0</Index> | |
49 | + <ParameterKey>soho_erne_ledp(0)</ParameterKey> | |
50 | + </Element> | |
51 | + <Element> | |
52 | + <Name>1.6 - 2.0 MeV</Name> | |
53 | + <Index>1</Index> | |
54 | + <ParameterKey>soho_erne_ledp(1)</ParameterKey> | |
55 | + </Element> | |
56 | + <Element> | |
57 | + <Name>2.0 - 2.5 MeV</Name> | |
58 | + <Index>2</Index> | |
59 | + <ParameterKey>soho_erne_ledp(2)</ParameterKey> | |
60 | + </Element> | |
61 | + <Element> | |
62 | + <Name>2.5 - 3.2 MeV</Name> | |
63 | + <Index>3</Index> | |
64 | + <ParameterKey>soho_erne_ledp(3)</ParameterKey> | |
65 | + </Element> | |
66 | + <Element> | |
67 | + <Name>3.2 - 4.0 MeV</Name> | |
68 | + <Index>4</Index> | |
69 | + <ParameterKey>soho_erne_ledp(4)</ParameterKey> | |
70 | + </Element> | |
71 | + <Element> | |
72 | + <Name>4.0 - 5.0 MeV</Name> | |
73 | + <Index>5</Index> | |
74 | + <ParameterKey>soho_erne_ledp(5)</ParameterKey> | |
75 | + </Element> | |
76 | + <Element> | |
77 | + <Name>5.0 - 6.4 MeV</Name> | |
78 | + <Index>6</Index> | |
79 | + <ParameterKey>soho_erne_ledp(6)</ParameterKey> | |
80 | + </Element> | |
81 | + <Element> | |
82 | + <Name>6.4 - 8.0 MeV</Name> | |
83 | + <Index>7</Index> | |
84 | + <ParameterKey>soho_erne_ledp(7)</ParameterKey> | |
85 | + </Element> | |
86 | + <Element> | |
87 | + <Name>8.0 - 10 MeV</Name> | |
88 | + <Index>8</Index> | |
89 | + <ParameterKey>soho_erne_ledp(8)</ParameterKey> | |
90 | + </Element> | |
91 | + <Element> | |
92 | + <Name>10 - 13 MeV</Name> | |
93 | + <Index>9</Index> | |
94 | + <ParameterKey>soho_erne_ledp(9)</ParameterKey> | |
95 | + </Element> | |
96 | + </Structure> | |
97 | + <Particle> | |
98 | + <ParticleType>Proton</ParticleType> | |
99 | + <ParticleQuantity>NumberFlux</ParticleQuantity> | |
100 | + </Particle> | |
101 | + </Parameter> | |
102 | + <Parameter> | |
103 | + <Name>intensity 4He</Name> | |
104 | + <ParameterKey>soho_erne_leda</ParameterKey> | |
105 | + <Units>1/(cm**2 sr s MeV/n)</Units> | |
106 | + <Structure> | |
107 | + <Size>10</Size> | |
108 | + <Element> | |
109 | + <Name>1.3 - 1.6 MeV/n</Name> | |
110 | + <Index>0</Index> | |
111 | + <ParameterKey>soho_erne_leda(0)</ParameterKey> | |
112 | + </Element> | |
113 | + <Element> | |
114 | + <Name>1.6 - 2.0 MeV/n</Name> | |
115 | + <Index>1</Index> | |
116 | + <ParameterKey>soho_erne_leda(1)</ParameterKey> | |
117 | + </Element> | |
118 | + <Element> | |
119 | + <Name>2.0 - 2.5 MeV/n</Name> | |
120 | + <Index>2</Index> | |
121 | + <ParameterKey>soho_erne_leda(2)</ParameterKey> | |
122 | + </Element> | |
123 | + <Element> | |
124 | + <Name>2.5 - 3.2 MeV/n</Name> | |
125 | + <Index>3</Index> | |
126 | + <ParameterKey>soho_erne_leda(3)</ParameterKey> | |
127 | + </Element> | |
128 | + <Element> | |
129 | + <Name>3.2 - 4.0 MeV/n</Name> | |
130 | + <Index>4</Index> | |
131 | + <ParameterKey>soho_erne_leda(4)</ParameterKey> | |
132 | + </Element> | |
133 | + <Element> | |
134 | + <Name>4.0 - 5.0 MeV/n</Name> | |
135 | + <Index>5</Index> | |
136 | + <ParameterKey>soho_erne_leda(5)</ParameterKey> | |
137 | + </Element> | |
138 | + <Element> | |
139 | + <Name>5.0 - 6.4 MeV/n</Name> | |
140 | + <Index>6</Index> | |
141 | + <ParameterKey>soho_erne_leda(6)</ParameterKey> | |
142 | + </Element> | |
143 | + <Element> | |
144 | + <Name>6.4 - 8.0 MeV/n</Name> | |
145 | + <Index>7</Index> | |
146 | + <ParameterKey>soho_erne_leda(7)</ParameterKey> | |
147 | + </Element> | |
148 | + <Element> | |
149 | + <Name>8.0 - 10 MeV/n</Name> | |
150 | + <Index>8</Index> | |
151 | + <ParameterKey>soho_erne_leda(8)</ParameterKey> | |
152 | + </Element> | |
153 | + <Element> | |
154 | + <Name>10 - 13 MeV/n</Name> | |
155 | + <Index>9</Index> | |
156 | + <ParameterKey>soho_erne_leda(9)</ParameterKey> | |
157 | + </Element> | |
158 | + </Structure> | |
159 | + <Particle> | |
160 | + <ParticleType>AlphaParticle</ParticleType> | |
161 | + <ParticleQuantity>NumberFlux</ParticleQuantity> | |
162 | + </Particle> | |
163 | + </Parameter> | |
164 | + </NumericalData> | |
165 | +</Spase> | ... | ... |
NumericalData/CDPP-AMDA/Solar_Orbiter/RPW/solo-rpw-density10s.xml
... | ... | @@ -4,7 +4,7 @@ |
4 | 4 | <NumericalData> |
5 | 5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/Solar_orbiter/RPW/solo-rpw-density10s</ResourceID> |
6 | 6 | <ResourceHeader> |
7 | - <ResourceName>electron density (10 sec.)</ResourceName> | |
7 | + <ResourceName>electron density (10 s)</ResourceName> | |
8 | 8 | <AlternateName></AlternateName> |
9 | 9 | <ReleaseDate>2021-07-21T00:00:00Z</ReleaseDate> |
10 | 10 | <Description>Solar Orbiter Radio/Plasma Wave, LFR L3 plasma density derived from the spacecraft potential, downsampled</Description> | ... | ... |
NumericalData/CDPP-AMDA/Solar_Orbiter/RPW/solo-rpw-efield10s.xml
... | ... | @@ -4,7 +4,7 @@ |
4 | 4 | <NumericalData> |
5 | 5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/Solar_orbiter/RPW/solo-rpw-efield10s</ResourceID> |
6 | 6 | <ResourceHeader> |
7 | - <ResourceName>electric field (10 sec.)</ResourceName> | |
7 | + <ResourceName>electric field (10 s)</ResourceName> | |
8 | 8 | <AlternateName></AlternateName> |
9 | 9 | <ReleaseDate>2021-07-21T00:00:00Z</ReleaseDate> |
10 | 10 | <Description>Solar Orbiter Radio/Plasma Wave, LFR L3 electric field vector, downsampled</Description> | ... | ... |
NumericalData/CDPP-AMDA/Solar_Orbiter/RPW/solo-rpw-scpot10s.xml
... | ... | @@ -4,7 +4,7 @@ |
4 | 4 | <NumericalData> |
5 | 5 | <ResourceID>spase://CNES/NumericalData/CDPP-AMDA/Solar_orbiter/RPW/solo-rpw-scpot10s</ResourceID> |
6 | 6 | <ResourceHeader> |
7 | - <ResourceName>spacecraft potential (10 sec.)</ResourceName> | |
7 | + <ResourceName>spacecraft potential (10 s)</ResourceName> | |
8 | 8 | <AlternateName></AlternateName> |
9 | 9 | <ReleaseDate>2021-07-21T00:00:00Z</ReleaseDate> |
10 | 10 | <Description>Solar Orbiter Radio/Plasma Wave, LFR L3 spacecraft potential, downsampled</Description> | ... | ... |
... | ... | @@ -0,0 +1,43 @@ |
1 | +<?xml version='1.0' encoding='UTF-8'?> | |
2 | +<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://amda.irap.omp.eu/public/schemas/spase-2_3_1.xsd"> | |
3 | + <Version>2.3.1</Version> | |
4 | + <Observatory> | |
5 | + <ResourceID>spase://CNES/Observatory/CDPP-AMDA/SOHO</ResourceID> | |
6 | + <ResourceHeader> | |
7 | + <ResourceName>SOHO</ResourceName> | |
8 | + <AlternateName>1995-065A</AlternateName> | |
9 | + <AlternateName>Solar and Heliospheric Observatory</AlternateName> | |
10 | + <ReleaseDate>2019-05-05T12:34:56Z</ReleaseDate> | |
11 | + <Description>The primary scientific aims of the Solar and Heliospheric Observatory mission (SOHO) were to investigate: (1) the physical processes that form and heat the Sun's corona, maintain it and give rise to the expanding solar wind; and, (2) the interior structure of the Sun. Imaging and collection of spectroscopic plasma diagnostics of the solar chromosphere, transition region and corona, as well as in situ solar-wind measurements are used to study the corona and solar wind. Solar interior structure is investigated by helioseismological means and by the observation of variations in solar irradiance. SOHO was part of the International Solar-Terrestrial Physics Program (ISTP). | |
12 | + | |
13 | +The SOHO spacecraft was three-axis stabilized and pointed towards the Sun with an accuracy of +/- 10 arcsec per 15 min. It consisted of a Payload Module to accommodate the instruments and a Service Module carrying the spacecraft subsystems and solar arrays. SOHO occupied a halo orbit at the Earth-Sun L1 Lagrangian point to obtain uninterrupted sunlight. The design life was two years, but on-board consumables were sufficient for an extra four years of operations. | |
14 | + | |
15 | +Twelve instruments comprised the payload, producing a continuous stream of data at 40 kbs, except whenever the solar oscillations imager Michelson Doppler Imager (MDI) was operated in high-bit-rate mode, producing 160 kbs. The high-bit-rate mode was used during scheduled daily eight-hour periods or during dedicated campaigns. Magnetic tape stored data between telemetry contacts with the Experiment Operations Facility, located at NASA-GSFC. For more information, see B. Fleck, V. Domingo, and A. I. Poland, eds., Solar Physics, V. 162, 1995. | |
16 | + | |
17 | +SOHO was a joint mission of the European Space Agency and NASA. It was launched aboard an Atlas IIAS rocket from Cape Canaveral Air Station, FL, on Dec. 2, 1995, and mission operations were directed from NASA's Goddard Space Flight Center, Greenbelt, MD. | |
18 | + | |
19 | +In April 1998, SOHO successfully completed its nominal two-year mission to study the Sun's atmosphere, surface and interior. Major science highlights include the detection of rivers of plasma beneath the surface of the Sun; the discovery of a magnetic "carpet" on the solar surface that seems to account for a substantial part of the energy that is needed to cause the very high temperature of the corona, the Sun's outermost layer; the first detection of flare-induced solar quakes; the discovery of more than 50 sungrazing comets; the most detailed view to date of the solar atmosphere; and spectacular images and movies of coronal mass ejections, which were being used to improve the ability to forecast space weather. | |
20 | + | |
21 | +Contact with SOHO was lost at 23:16 GMT on June 24, 1998 during maintenance operations. The spacecraft went into emergency sun reacquisition mode, which is activated when an anomaly occurs and the spacecraft loses its orientation toward the Sun. When this happened, the spacecraft automatically tried to point itself toward the Sun again by firing its attitude control thrusters under the guidance of an onboard Sun sensor. Efforts to re-establish contact with SOHO did not succeed and telemetry was lost, not to be reestablished for several weeks. | |
22 | + | |
23 | +Attitude analysis led to the conclusion that SOHO went into a spin such that the solar panels were nearly edge-on towards the Sun, and thus did not generate any power. Because the spin axis is fixed in space, as the spacecraft progressed in its orbit the orientation of the panels with respect to the Sun gradually changed, resulting in increased solar illumination of the solar arrays as time progressed. On August 3, contact was re-established with SOHO following six weeks of silence. After a lengthy recovery process, on September 16 the spacecraft again locked onto the Sun, and experiment heaters were switched on. After recommissioning of various subsystems, and an orbit correction maneuver, SOHO was finally brought back to normal mode on 25 September at 19:52:58 GMT. Instrument switch-on started October 5, 1998, and by November 4 all instruments were back to normal. | |
24 | +</Description> | |
25 | + <Contact> | |
26 | + <PersonID>spase://SMWG/Person/Arthur.I.Poland</PersonID> | |
27 | + <Role>ProjectScientist</Role> | |
28 | + </Contact> | |
29 | + <InformationURL> | |
30 | + <Name>NSSDC's Master Catalog</Name> | |
31 | + <URL>https://nssdc.gsfc.nasa.gov/nmc/spacecraft/display.action?id=1995-065A</URL> | |
32 | + <Description>Information about the SOHO mission | |
33 | +</Description> | |
34 | + </InformationURL> | |
35 | + </ResourceHeader> | |
36 | + <Location> | |
37 | + <ObservatoryRegion>Heliosphere.NearEarth</ObservatoryRegion> | |
38 | + </Location> | |
39 | + <OperatingSpan> | |
40 | + <StartDate>1995-12-02T00:00:00Z</StartDate> | |
41 | + </OperatingSpan> | |
42 | + </Observatory> | |
43 | +</Spase> | ... | ... |
... | ... | @@ -0,0 +1,10 @@ |
1 | +<?xml version='1.0' encoding='UTF-8'?> | |
2 | +<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://amda.irap.omp.eu/public/schemas/spase-2_3_1.xsd"> | |
3 | + <Version>2.3.1</Version> | |
4 | + <Person> | |
5 | + <ResourceID>spase://CNES/Person/Esa.Riihonen</ResourceID> | |
6 | + <PersonName>Esa Riihonen</PersonName> | |
7 | + <OrganizationName>University of Turku</OrganizationName> | |
8 | + <Email>esa.riihonen@utu.fi</Email> | |
9 | + </Person> | |
10 | +</Spase> | ... | ... |
... | ... | @@ -0,0 +1,10 @@ |
1 | +<?xml version='1.0' encoding='UTF-8'?> | |
2 | +<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://amda.irap.omp.eu/public/schemas/spase-2_3_1.xsd"> | |
3 | + <Version>2.3.1</Version> | |
4 | + <Person> | |
5 | + <ResourceID>spase://CNES/Person/Rami.Vainio</ResourceID> | |
6 | + <PersonName>Rami Vainio</PersonName> | |
7 | + <OrganizationName>University of Turku</OrganizationName> | |
8 | + <Email>rami.vainio@utu.fi</Email> | |
9 | + </Person> | |
10 | +</Spase> | ... | ... |