Commit abdc48e3a40ce76caa15e199cad3d9dddaa40a2f

Authored by Elena.Budnik
1 parent f339f345

work

NumericalData/AMDA/Cluster/Cluster1/EFW/clust1-efw-ppp.xml
... ... @@ -4,7 +4,7 @@
4 4 <NumericalData>
5 5 <ResourceID>spase://CDPP/NumericalData/AMDA/Cluster/Cluster1/EFW/clust1-efw-ppp</ResourceID>
6 6 <ResourceHeader>
7   - <ResourceName>efield ppp</ResourceName>
  7 + <ResourceName>prime parameters</ResourceName>
8 8 <AlternateName>Cluster 1 Prime Parameter EFW Data</AlternateName>
9 9 <ReleaseDate>2015-10-16T16:51:44Z</ReleaseDate>
10 10 <Description>The EFW (Electric Field and Waves) instrument consists of four orthogonal spherical sensors deployed from 50 m cable booms in the spin plane of the spacecraft, plus four deployment units and a main electronics unit. Each deployment unit deploys a multiconductor cable and tip-mounted spherical sensor. Each opposing pair of cables will be symmetrically deployed to a tip-to-tip distance of approximately 100 m, except for about a week at the beginning of the mission when 70 m will be used for one boom pair (the Z-booms) and 100 m for the other pair. The potentials of the spherical sensor and nearby conductors are controlled by the microprocessor to minimize errors associated with photoelectron fluxes to and from the spheres. Output signals from the sensor preamplifiers are provided to the wave instruments for analysis of high frequency wave phenomena. There is a 1 MB burst memory and tow fast A/D conversion circuits for recording electric field wave forms for time resolutions of up to 36,000 samples/s. Data gathered in the burst memory will be played back through the telemetry stream allocated to the instrument by pre-empting a portion of the real-time data. Incoming data are continuously monitored by algorithms in the software to determine whether to trigger the burst-playback mode. A large number of sampling modes is possible, yielding four possible telemetry rates from 1.440-29.440 Kbps. This data stream is transferred via the DWP instrument. The main measured quantities will be, in various modes: (1) the instantaneous spin-plane components of the electric field vector, from 0.1-700 V/Km, with time resolution down to 0.1 ms, in four frequency ranges from DC to upper limits of 10 Hz, 180 Hz, 4 KHz, or 32 KHz; (2) the AC electric field components from 10 Hz to 8 KHz, within the dynamic range of ~3 mV/Km to 10 V/Km; (3) plasma density fluctuations within the range of 1-100/cm and in three frequency ranges from 0 Hz to upper limits of 10 Hz, 180 Hz, or 4 KHz; and, (4) density and temperature (in Langmuir sweeps) in the eV range, with a dynamic range of 1-100/cm. There is also a frequency counter covering the range 10-200 KHz. On-board calculations of least-square fits to the electric field data over one spacecraft spin period (4 s) will provide a baseline of high-quality two-dimensional electric field components that are present in the telemetry stream, except for periods when three or four sensors are in current mode. The spacecraft potential is calculated and transmitted via DWP to other instruments on board. The three components from the search coil instrument (WHISPER) are also available in EFW with a bandwidth of 4 KHz. For more details of the Cluster mission, the spacecraft, and its instruments, see the report Cluster: mission, payload and supporting activities, March 1993, ESA SP-1159, and the included article The Spherical Probe Electric Field and Waves experiment for the Cluster Mission, by G. Gustafsson et al., from which this information was obtained.</Description>
... ... @@ -30,7 +30,7 @@
30 30 <Format>NetCDF</Format>
31 31 <Acknowledgement>NASA, Georg Gustafsson</Acknowledgement>
32 32 </AccessInformation>
33   - <ProviderName>CSDS-CNES</ProviderName>
  33 + <ProviderName>CSA</ProviderName>
34 34 <ProcessingLevel>Calibrated</ProcessingLevel>
35 35 <ProviderResourceName>Cluster II Rumba Prime Parameter Electric Field and Waves (EFW) Data</ProviderResourceName>
36 36 <ProviderProcessingLevel>Calibrated</ProviderProcessingLevel>
... ... @@ -40,7 +40,7 @@
40 40 <TemporalDescription>
41 41 <TimeSpan>
42 42 <StartDate>2001-01-01T00:00:02Z</StartDate>
43   - <StopDate>2012-04-30T23:59:54Z</StopDate>
  43 + <StopDate>2012-12-31T23:59:54Z</StopDate>
44 44 </TimeSpan>
45 45 <Cadence>PT4S</Cadence>
46 46 </TemporalDescription>
... ... @@ -67,7 +67,7 @@
67 67 <Keyword>magnetotail</Keyword>
68 68 <Keyword>lobe</Keyword>
69 69 <Parameter>
70   - <Name>Duskward Electric Field</Name>
  70 + <Name>e_dusk</Name>
71 71 <ParameterKey>c1_edusk</ParameterKey>
72 72 <Description>Cluster II Rumba Prime Parameter Electric Field and Waves duskward electric field at spin time resolution</Description>
73 73 <Ucd>phys.elecField</Ucd>
... ... @@ -89,7 +89,7 @@
89 89 </Field>
90 90 </Parameter>
91 91 <Parameter>
92   - <Name>F1 Band Spectral Density</Name>
  92 + <Name>e_spectral_density_F1</Name>
93 93 <ParameterKey>c1_efw_f1</ParameterKey>
94 94 <Description>Cluster II Rumba Prime Parameter Electric Field and Waves f1 band spectral density at spin time resolution</Description>
95 95 <Ucd>phys.density</Ucd>
... ... @@ -115,7 +115,7 @@
115 115 </Field>
116 116 </Parameter>
117 117 <Parameter>
118   - <Name>F2 Band Spectral Density</Name>
  118 + <Name>e_spectral_density_F2</Name>
119 119 <ParameterKey>c1_efw_f2</ParameterKey>
120 120 <Description>Cluster II Rumba Prime Parameter Electric Field and Waves f2 band spectral density at spin time resolution</Description>
121 121 <Ucd>phys.density</Ucd>
... ... @@ -124,6 +124,7 @@
124 124 <RenderingHints>
125 125 <DisplayType>TimeSeries</DisplayType>
126 126 </RenderingHints>
  127 + <FillValue>-1.0000e+31</FillValue>
127 128 <Field>
128 129 <Qualifier>Spectral</Qualifier>
129 130 <FieldQuantity>Electric</FieldQuantity>
... ... @@ -135,13 +136,14 @@
135 136 </Field>
136 137 </Parameter>
137 138 <Parameter>
138   - <Name>Potential</Name>
  139 + <Name>s/c pot</Name>
139 140 <ParameterKey>c1_pot</ParameterKey>
140 141 <Ucd>phys.potential;phys.elecField;instr.obsty</Ucd>
141 142 <Units>V</Units>
142 143 <RenderingHints>
143 144 <DisplayType>TimeSeries</DisplayType>
144 145 </RenderingHints>
  146 + <FillValue>-1.0000e+31</FillValue>
145 147 <Field>
146 148 <FieldQuantity>Electric</FieldQuantity>
147 149 </Field>
... ...
NumericalData/AMDA/Cluster/Cluster2/EFW/clust2-efw-ppp.xml
... ... @@ -4,7 +4,7 @@
4 4 <NumericalData>
5 5 <ResourceID>spase://CDPP/NumericalData/AMDA/Cluster/Cluster2/EFW/clust2-efw-ppp</ResourceID>
6 6 <ResourceHeader>
7   - <ResourceName>Cluster II Salsa Prime Parameter Electric Field and Waves (EFW) Data</ResourceName>
  7 + <ResourceName>prime parameters</ResourceName>
8 8 <AlternateName>Cluster 2 Prime Parameter EFW Data</AlternateName>
9 9 <ReleaseDate>2015-10-19T15:51:44Z</ReleaseDate>
10 10 <Description>The EFW (Electric Field and Waves) instrument consists of four orthogonal spherical sensors deployed from 50 m cable booms in the spin plane of the spacecraft, plus four deployment units and a main electronics unit. Each deployment unit deploys a multiconductor cable and tip-mounted spherical sensor. Each opposing pair of cables will be symmetrically deployed to a tip-to-tip distance of approximately 100 m, except for about a week at the beginning of the mission when 70 m will be used for one boom pair (the Z-booms) and 100 m for the other pair. The potentials of the spherical sensor and nearby conductors are controlled by the microprocessor to minimize errors associated with photoelectron fluxes to and from the spheres. Output signals from the sensor preamplifiers are provided to the wave instruments for analysis of high frequency wave phenomena. There is a 1 MB burst memory and tow fast A/D conversion circuits for recording electric field wave forms for time resolutions of up to 36,000 samples/s. Data gathered in the burst memory will be played back through the telemetry stream allocated to the instrument by pre-empting a portion of the real-time data. Incoming data are continuously monitored by algorithms in the software to determine whether to trigger the burst-playback mode. A large number of sampling modes is possible, yielding four possible telemetry rates from 1.440-29.440 Kbps. This data stream is transferred via the DWP instrument. The main measured quantities will be, in various modes: (1) the instantaneous spin-plane components of the electric field vector, from 0.1-700 V/Km, with time resolution down to 0.1 ms, in four frequency ranges from DC to upper limits of 10 Hz, 180 Hz, 4 KHz, or 32 KHz; (2) the AC electric field components from 10 Hz to 8 KHz, within the dynamic range of ~3 mV/Km to 10 V/Km; (3) plasma density fluctuations within the range of 1-100/cm and in three frequency ranges from 0 Hz to upper limits of 10 Hz, 180 Hz, or 4 KHz; and, (4) density and temperature (in Langmuir sweeps) in the eV range, with a dynamic range of 1-100/cm. There is also a frequency counter covering the range 10-200 KHz. On-board calculations of least-square fits to the electric field data over one spacecraft spin period (4 s) will provide a baseline of high-quality two-dimensional electric field components that are present in the telemetry stream, except for periods when three or four sensors are in current mode. The spacecraft potential is calculated and transmitted via DWP to other instruments on board. The three components from the search coil instrument (WHISPER) are also available in EFW with a bandwidth of 4 KHz. For more details of the Cluster mission, the spacecraft, and its instruments, see the report Cluster: mission, payload and supporting activities, March 1993, ESA SP-1159, and the included article The Spherical Probe Electric Field and Waves experiment for the Cluster Mission, by G. Gustafsson et al., from which this information was obtained.</Description>
... ... @@ -18,10 +18,6 @@
18 18 <URL>http://nssdc.gsfc.nasa.gov/nmc/experimentDisplay.do?id=2000-045A-08</URL>
19 19 <Description>This site provides information concerning the Cluster II Salsa Electric Field and Waves Instrument.</Description>
20 20 </InformationURL>
21   - <Association>
22   - <AssociationID>spase://SMWG/Observatory/Cluster-Salsa</AssociationID>
23   - <AssociationType>ObservedBy</AssociationType>
24   - </Association>
25 21 </ResourceHeader>
26 22 <AccessInformation>
27 23 <RepositoryID>spase://SMWG/Repository/CDPP/AMDA</RepositoryID>
... ... @@ -34,7 +30,7 @@
34 30 <Format>NetCDF</Format>
35 31 <Acknowledgement>NASA, Georg Gustafsson</Acknowledgement>
36 32 </AccessInformation>
37   - <ProviderName>CSDS-CNES</ProviderName>
  33 + <ProviderName>CSA</ProviderName>
38 34 <ProcessingLevel>Calibrated</ProcessingLevel>
39 35 <ProviderResourceName>Cluster II Salsa Prime Parameter Electric Field and Waves (EFW) Data</ProviderResourceName>
40 36 <ProviderProcessingLevel>Calibrated</ProviderProcessingLevel>
... ... @@ -44,7 +40,7 @@
44 40 <TemporalDescription>
45 41 <TimeSpan>
46 42 <StartDate>2001-01-01T00:00:06Z</StartDate>
47   - <StopDate>2012-04-30T23:59:54Z</StopDate>
  43 + <StopDate>2012-12-31T23:59:54Z</StopDate>
48 44 </TimeSpan>
49 45 <Cadence>PT4S</Cadence>
50 46 </TemporalDescription>
... ... @@ -71,7 +67,7 @@
71 67 <Keyword>magnetotail</Keyword>
72 68 <Keyword>lobe</Keyword>
73 69 <Parameter>
74   - <Name>Duskward Electric Field</Name>
  70 + <Name>e_dusk</Name>
75 71 <ParameterKey>c2_edusk</ParameterKey>
76 72 <Description>Cluster II Salsa Prime Parameter Electric Field and Waves duskward electric field at spin time resolution</Description>
77 73 <Ucd>phys.elecField</Ucd>
... ... @@ -93,7 +89,7 @@
93 89 </Field>
94 90 </Parameter>
95 91 <Parameter>
96   - <Name>F1 Band Spectral Density</Name>
  92 + <Name>e_spectral_density_F1</Name>
97 93 <ParameterKey>c2_efw_f1</ParameterKey>
98 94 <Description>Cluster II Salsa Prime Parameter Electric Field and Waves f1 band spectral density at spin time resolution</Description>
99 95 <Ucd>phys.density</Ucd>
... ... @@ -119,7 +115,7 @@
119 115 </Field>
120 116 </Parameter>
121 117 <Parameter>
122   - <Name>F2 Band Spectral Density</Name>
  118 + <Name>e_spectral_density_F2</Name>
123 119 <ParameterKey>c2_efw_f2</ParameterKey>
124 120 <Description>Cluster II Salsa Prime Parameter Electric Field and Waves f2 band spectral density at spin time resolution</Description>
125 121 <Ucd>phys.potential;phys.elecField;instr.obsty</Ucd>
... ... @@ -127,6 +123,7 @@
127 123 <RenderingHints>
128 124 <DisplayType>TimeSeries</DisplayType>
129 125 </RenderingHints>
  126 + <FillValue>-1.0000e+31</FillValue>
130 127 <Field>
131 128 <Qualifier>Spectral</Qualifier>
132 129 <FieldQuantity>Electric</FieldQuantity>
... ... @@ -138,13 +135,14 @@
138 135 </Field>
139 136 </Parameter>
140 137 <Parameter>
141   - <Name>Potential</Name>
  138 + <Name>s/c pot</Name>
142 139 <ParameterKey>c2_pot</ParameterKey>
143 140 <Ucd>phys.potential;phys.elecField;instr.obsty</Ucd>
144 141 <Units>V</Units>
145 142 <RenderingHints>
146 143 <DisplayType>TimeSeries</DisplayType>
147 144 </RenderingHints>
  145 + <FillValue>-1.0000e+31</FillValue>
148 146 <Field>
149 147 <FieldQuantity>Electric</FieldQuantity>
150 148 </Field>
... ...
NumericalData/AMDA/Cluster/Cluster3/EFW/clust3-efw-ppp.xml
... ... @@ -4,7 +4,7 @@
4 4 <NumericalData>
5 5 <ResourceID>spase://CDPP/NumericalData/AMDA/Cluster/Cluster3/EFW/clust3-efw-ppp</ResourceID>
6 6 <ResourceHeader>
7   - <ResourceName>Cluster II Samba Prime Parameter Electric Field and Waves (EFW) Data</ResourceName>
  7 + <ResourceName>prime parameters</ResourceName>
8 8 <AlternateName>Cluster 3 Prime Parameter EFW Data</AlternateName>
9 9 <ReleaseDate>2015-10-19T15:51:44Z</ReleaseDate>
10 10 <Description>The EFW (Electric Field and Waves) instrument consists of four orthogonal spherical sensors deployed from 50 m cable booms in the spin plane of the spacecraft, plus four deployment units and a main electronics unit. Each deployment unit deploys a multiconductor cable and tip-mounted spherical sensor. Each opposing pair of cables will be symmetrically deployed to a tip-to-tip distance of approximately 100 m, except for about a week at the beginning of the mission when 70 m will be used for one boom pair (the Z-booms) and 100 m for the other pair. The potentials of the spherical sensor and nearby conductors are controlled by the microprocessor to minimize errors associated with photoelectron fluxes to and from the spheres. Output signals from the sensor preamplifiers are provided to the wave instruments for analysis of high frequency wave phenomena. There is a 1 MB burst memory and tow fast A/D conversion circuits for recording electric field wave forms for time resolutions of up to 36,000 samples/s. Data gathered in the burst memory will be played back through the telemetry stream allocated to the instrument by pre-empting a portion of the real-time data. Incoming data are continuously monitored by algorithms in the software to determine whether to trigger the burst-playback mode. A large number of sampling modes is possible, yielding four possible telemetry rates from 1.440-29.440 Kbps. This data stream is transferred via the DWP instrument. The main measured quantities will be, in various modes: (1) the instantaneous spin-plane components of the electric field vector, from 0.1-700 V/Km, with time resolution down to 0.1 ms, in four frequency ranges from DC to upper limits of 10 Hz, 180 Hz, 4 KHz, or 32 KHz; (2) the AC electric field components from 10 Hz to 8 KHz, within the dynamic range of ~3 mV/Km to 10 V/Km; (3) plasma density fluctuations within the range of 1-100/cm and in three frequency ranges from 0 Hz to upper limits of 10 Hz, 180 Hz, or 4 KHz; and, (4) density and temperature (in Langmuir sweeps) in the eV range, with a dynamic range of 1-100/cm. There is also a frequency counter covering the range 10-200 KHz. On-board calculations of least-square fits to the electric field data over one spacecraft spin period (4 s) will provide a baseline of high-quality two-dimensional electric field components that are present in the telemetry stream, except for periods when three or four sensors are in current mode. The spacecraft potential is calculated and transmitted via DWP to other instruments on board. The three components from the search coil instrument (WHISPER) are also available in EFW with a bandwidth of 4 KHz. For more details of the Cluster mission, the spacecraft, and its instruments, see the report Cluster: mission, payload and supporting activities, March 1993, ESA SP-1159, and the included article The Spherical Probe Electric Field and Waves experiment for the Cluster Mission, by G. Gustafsson et al., from which this information was obtained.</Description>
... ... @@ -17,11 +17,7 @@
17 17 <Name>NSSDC Master Catalog listing for Cluster II Samba Electric Field and Waves (EFW)</Name>
18 18 <URL>http://nssdc.gsfc.nasa.gov/nmc/experimentDisplay.do?id=2000-045A-08</URL>
19 19 <Description>This site provides information concerning the Cluster II Samba Electric Field and Waves Instrument.</Description>
20   - </InformationURL>
21   - <Association>
22   - <AssociationID>spase://SMWG/Observatory/Cluster-Samba</AssociationID>
23   - <AssociationType>ObservedBy</AssociationType>
24   - </Association>
  20 + </InformationURL>
25 21 </ResourceHeader>
26 22 <AccessInformation>
27 23 <RepositoryID>spase://SMWG/Repository/CDPP/AMDA</RepositoryID>
... ... @@ -44,7 +40,7 @@
44 40 <TemporalDescription>
45 41 <TimeSpan>
46 42 <StartDate>2001-01-01T00:00:02Z</StartDate>
47   - <StopDate>2012-04-30T23:59:54Z</StopDate>
  43 + <StopDate>2012-12-31T23:59:58Z</StopDate>
48 44 </TimeSpan>
49 45 <Cadence>PT4S</Cadence>
50 46 </TemporalDescription>
... ... @@ -71,7 +67,7 @@
71 67 <Keyword>magnetotail</Keyword>
72 68 <Keyword>lobe</Keyword>
73 69 <Parameter>
74   - <Name>Duskward Electric Field</Name>
  70 + <Name>e_dusk</Name>
75 71 <ParameterKey>c3_edusk</ParameterKey>
76 72 <Description>Cluster II Samba Prime Parameter Electric Field and Waves duskward electric field at spin time resolution</Description>
77 73 <Ucd>phys.elecField</Ucd>
... ... @@ -93,7 +89,7 @@
93 89 </Field>
94 90 </Parameter>
95 91 <Parameter>
96   - <Name>F1 Band Spectral Density</Name>
  92 + <Name>e_spectral_density_F1y</Name>
97 93 <ParameterKey>c3_efw_f1</ParameterKey>
98 94 <Description>Cluster II Samba Prime Parameter Electric Field and Waves f1 band spectral density at spin time resolution</Description>
99 95 <Ucd>phys.density</Ucd>
... ... @@ -119,7 +115,7 @@
119 115 </Field>
120 116 </Parameter>
121 117 <Parameter>
122   - <Name>F2 Band Spectral Density</Name>
  118 + <Name>e_spectral_density_F2</Name>
123 119 <ParameterKey>c3_efw_f2</ParameterKey>
124 120 <Description>Cluster II Samba Prime Parameter Electric Field and Waves f2 band spectral density at spin time resolution</Description>
125 121 <Ucd>phys.density</Ucd>
... ... @@ -128,6 +124,7 @@
128 124 <RenderingHints>
129 125 <DisplayType>TimeSeries</DisplayType>
130 126 </RenderingHints>
  127 + <FillValue>-1.0000e+31</FillValue>
131 128 <Field>
132 129 <Qualifier>Spectral</Qualifier>
133 130 <FieldQuantity>Electric</FieldQuantity>
... ... @@ -139,13 +136,14 @@
139 136 </Field>
140 137 </Parameter>
141 138 <Parameter>
142   - <Name>Potential</Name>
  139 + <Name>s/c pot</Name>
143 140 <ParameterKey>c3_pot</ParameterKey>
144 141 <Ucd>phys.potential;phys.elecField;instr.obsty</Ucd>
145 142 <Units>V</Units>
146 143 <RenderingHints>
147 144 <DisplayType>TimeSeries</DisplayType>
148 145 </RenderingHints>
  146 + <FillValue>-1.0000e+31</FillValue>
149 147 <Field>
150 148 <FieldQuantity>Electric</FieldQuantity>
151 149 </Field>
... ...
NumericalData/AMDA/Cluster/Cluster4/EFW/clust4-efw-ppp.xml
... ... @@ -4,7 +4,7 @@
4 4 <NumericalData>
5 5 <ResourceID>spase://CDPP/NumericalData/AMDA/Cluster/Cluster4/EFW/clust4-efw-ppp</ResourceID>
6 6 <ResourceHeader>
7   - <ResourceName>Cluster II Tango Prime Parameter Electric Field and Waves (EFW) Data</ResourceName>
  7 + <ResourceName>prime parameters</ResourceName>
8 8 <AlternateName>Cluster 4 Prime Parameter EFW Data</AlternateName>
9 9 <ReleaseDate>2015-10-16T16:51:44Z</ReleaseDate>
10 10 <Description>The EFW (Electric Field and Waves) instrument consists of four orthogonal spherical sensors deployed from 50 m cable booms in the spin plane of the spacecraft, plus four deployment units and a main electronics unit. Each deployment unit deploys a multiconductor cable and tip-mounted spherical sensor. Each opposing pair of cables will be symmetrically deployed to a tip-to-tip distance of approximately 100 m, except for about a week at the beginning of the mission when 70 m will be used for one boom pair (the Z-booms) and 100 m for the other pair. The potentials of the spherical sensor and nearby conductors are controlled by the microprocessor to minimize errors associated with photoelectron fluxes to and from the spheres. Output signals from the sensor preamplifiers are provided to the wave instruments for analysis of high frequency wave phenomena. There is a 1 MB burst memory and tow fast A/D conversion circuits for recording electric field wave forms for time resolutions of up to 36,000 samples/s. Data gathered in the burst memory will be played back through the telemetry stream allocated to the instrument by pre-empting a portion of the real-time data. Incoming data are continuously monitored by algorithms in the software to determine whether to trigger the burst-playback mode. A large number of sampling modes is possible, yielding four possible telemetry rates from 1.440-29.440 Kbps. This data stream is transferred via the DWP instrument. The main measured quantities will be, in various modes: (1) the instantaneous spin-plane components of the electric field vector, from 0.1-700 V/Km, with time resolution down to 0.1 ms, in four frequency ranges from DC to upper limits of 10 Hz, 180 Hz, 4 KHz, or 32 KHz; (2) the AC electric field components from 10 Hz to 8 KHz, within the dynamic range of ~3 mV/Km to 10 V/Km; (3) plasma density fluctuations within the range of 1-100/cm and in three frequency ranges from 0 Hz to upper limits of 10 Hz, 180 Hz, or 4 KHz; and, (4) density and temperature (in Langmuir sweeps) in the eV range, with a dynamic range of 1-100/cm. There is also a frequency counter covering the range 10-200 KHz. On-board calculations of least-square fits to the electric field data over one spacecraft spin period (4 s) will provide a baseline of high-quality two-dimensional electric field components that are present in the telemetry stream, except for periods when three or four sensors are in current mode. The spacecraft potential is calculated and transmitted via DWP to other instruments on board. The three components from the search coil instrument (WHISPER) are also available in EFW with a bandwidth of 4 KHz. For more details of the Cluster mission, the spacecraft, and its instruments, see the report Cluster: mission, payload and supporting activities, March 1993, ESA SP-1159, and the included article The Spherical Probe Electric Field and Waves experiment for the Cluster Mission, by G. Gustafsson et al., from which this information was obtained.</Description>
... ... @@ -17,11 +17,7 @@
17 17 <Name>NSSDC Master Catalog listing for Cluster II Tango Electric Field and Waves (EFW)</Name>
18 18 <URL>http://nssdc.gsfc.nasa.gov/nmc/experimentDisplay.do?id=2000-045A-08</URL>
19 19 <Description>This site provides information concerning the Cluster II Tango Electric Field and Waves Instrument.</Description>
20   - </InformationURL>
21   - <Association>
22   - <AssociationID>spase://SMWG/Observatory/Cluster-Tango</AssociationID>
23   - <AssociationType>ObservedBy</AssociationType>
24   - </Association>
  20 + </InformationURL>
25 21 </ResourceHeader>
26 22 <AccessInformation>
27 23 <RepositoryID>spase://SMWG/Repository/CDPP/AMDA</RepositoryID>
... ... @@ -44,7 +40,7 @@
44 40 <TemporalDescription>
45 41 <TimeSpan>
46 42 <StartDate>2001-01-01T00:00:02Z</StartDate>
47   - <StopDate>2012-04-30T23:59:58Z</StopDate>
  43 + <StopDate>2012-12-31T23:59:54Z</StopDate>
48 44 </TimeSpan>
49 45 <Cadence>PT4S</Cadence>
50 46 </TemporalDescription>
... ... @@ -71,7 +67,7 @@
71 67 <Keyword>magnetotail</Keyword>
72 68 <Keyword>lobe</Keyword>
73 69 <Parameter>
74   - <Name>Duskward Electric Field</Name>
  70 + <Name>e_dusk</Name>
75 71 <ParameterKey>c4_edusk</ParameterKey>
76 72 <Description>Cluster II Tango Prime Parameter Electric Field and Waves duskward electric field at spin time resolution</Description>
77 73 <Ucd>phys.elecField</Ucd>
... ... @@ -93,7 +89,7 @@
93 89 </Field>
94 90 </Parameter>
95 91 <Parameter>
96   - <Name>F1 Band Spectral Density</Name>
  92 + <Name>e_spectral_density_F1</Name>
97 93 <ParameterKey>c4_efw_f1</ParameterKey>
98 94 <Description>Cluster II Tango Prime Parameter Electric Field and Waves f1 band spectral density at spin time resolution</Description>
99 95 <Ucd>phys.density</Ucd>
... ... @@ -119,7 +115,7 @@
119 115 </Field>
120 116 </Parameter>
121 117 <Parameter>
122   - <Name>F2 Band Spectral Density</Name>
  118 + <Name>e_spectral_density_F2</Name>
123 119 <ParameterKey>c4_efw_f2</ParameterKey>
124 120 <Description>Cluster II Tango Prime Parameter Electric Field and Waves f2 band spectral density at spin time resolution</Description>
125 121 <Ucd>phys.density</Ucd>
... ... @@ -128,6 +124,7 @@
128 124 <RenderingHints>
129 125 <DisplayType>TimeSeries</DisplayType>
130 126 </RenderingHints>
  127 + <FillValue>-1.0000e+31</FillValue>
131 128 <Field>
132 129 <Qualifier>Spectral</Qualifier>
133 130 <FieldQuantity>Electric</FieldQuantity>
... ... @@ -139,13 +136,14 @@
139 136 </Field>
140 137 </Parameter>
141 138 <Parameter>
142   - <Name>Potential</Name>
  139 + <Name>s/c pot</Name>
143 140 <ParameterKey>c4_pot</ParameterKey>
144 141 <Ucd>phys.potential;phys.elecField;instr.obsty</Ucd>
145 142 <Units>V</Units>
146 143 <RenderingHints>
147 144 <DisplayType>TimeSeries</DisplayType>
148 145 </RenderingHints>
  146 + <FillValue>-1.0000e+31</FillValue>
149 147 <Field>
150 148 <FieldQuantity>Electric</FieldQuantity>
151 149 </Field>
... ...