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  • aaron-viets/dmt-runtime-configuration
  • andrew-lundgren/dmt-runtime-configuration
  • patrick.godwin/dmt-runtime-configuration
  • madeline-wade/dmt-runtime-configuration
  • gds/dmt-runtime-configuration
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with 352 additions and 641 deletions
......@@ -24,7 +24,9 @@ EXTRA_DIST += $(VirgoFile)
#--------------------------------------- LHO pseudo calibration.
LHOHoftCal = \
ReferenceCalibration_hoft_H1.xml
ReferenceCalibration_hoft_H1.xml \
ReferenceCalibration_Nolines_H1.xml \
ReferenceCalibration_Clean_H1.xml
EXTRA_DIST += $(LHOHoftCal)
......@@ -55,7 +57,9 @@ endif
#--------------------------------------- LLO pseudo calibration.
LLOHoftCal = \
ReferenceCalibration_hoft_L1.xml
ReferenceCalibration_hoft_L1.xml \
ReferenceCalibration_Nolines_L1.xml \
ReferenceCalibration_Clean_L1.xml
EXTRA_DIST += $(LLOHoftCal)
......
<?xml version="1.0"?>
<!DOCTYPE LIGO_LW SYSTEM "http://ldas-sw.ligo.caltech.edu/doc/ligolwAPI/html/ligolw_dtd.txt">
<LIGO_LW>
<LIGO_LW>
<Param Name="Channel">H1:GDS-CALIB_STRAIN_CLEAN</Param>
<Param Name="Comment">H1 clean hoft unit calibration</Param>
<Time Name="StartTime" Type="GPS">1300000000</Time>
<Param Name="Duration" Type="double">200000000</Param>
<Array Name="OpenLoopGain" Type="float">
<Dim Name="Frequency">5</Dim>
<Dim Name="Frequency_Modulus_Phase">3</Dim>
<Stream Type="Local" Delimiter=" ">
0 0 0
1000 0 0
2000 0 0
3000 0 0
4000 0 0
</Stream>
</Array>
<Array Name="SensingFunction" Type="float">
<Dim Name="Frequency">5</Dim>
<Dim Name="Frequency_Modulus_Phase">3</Dim>
<Stream Type="Local" Delimiter=" ">
0 1 0
1000 1 0
2000 1 0
3000 1 0
4000 1 0
</Stream>
</Array>
<Array Name="CavityFactor" Type="float">
<Dim Name="GPS">21</Dim>
<Dim Name="GPS_Value">2</Dim>
<Stream Type="Local" Delimiter=" ">
1300000000 1.0
1310000000 1.0
1320000000 1.0
1330000000 1.0
1340000000 1.0
1350000000 1.0
1360000000 1.0
1370000000 1.0
1380000000 1.0
1390000000 1.0
1400000000 1.0
1410000000 1.0
1420000000 1.0
1430000000 1.0
1440000000 1.0
1450000000 1.0
1460000000 1.0
1470000000 1.0
1480000000 1.0
1490000000 1.0
1500000000 1.0
</Stream>
</Array>
<Array Name="OLoopFactor" Type="float">
<Dim Name="GPS">20</Dim>
<Dim Name="GPS_Value">2</Dim>
<Stream Type="Local" Delimiter=" ">
1300000000 1.0
1310000000 1.0
1320000000 1.0
1330000000 1.0
1340000000 1.0
1350000000 1.0
1360000000 1.0
1370000000 1.0
1380000000 1.0
1390000000 1.0
1400000000 1.0
1410000000 1.0
1420000000 1.0
1430000000 1.0
1440000000 1.0
1450000000 1.0
1460000000 1.0
1470000000 1.0
1480000000 1.0
1490000000 1.0
1500000000 1.0
</Stream>
</Array>
</LIGO_LW>
</LIGO_LW>
<?xml version="1.0"?>
<!DOCTYPE LIGO_LW SYSTEM "http://ldas-sw.ligo.caltech.edu/doc/ligolwAPI/html/ligolw_dtd.txt">
<LIGO_LW>
<LIGO_LW>
<Param Name="Channel">L1:GDS-CALIB_STRAIN_CLEAN</Param>
<Param Name="Comment">L1 clean hoft unit calibration</Param>
<Time Name="StartTime" Type="GPS">1300000000</Time>
<Param Name="Duration" Type="double">200000000</Param>
<Array Name="OpenLoopGain" Type="float">
<Dim Name="Frequency">5</Dim>
<Dim Name="Frequency_Modulus_Phase">3</Dim>
<Stream Type="Local" Delimiter=" ">
0 0 0
1000 0 0
2000 0 0
3000 0 0
4000 0 0
</Stream>
</Array>
<Array Name="SensingFunction" Type="float">
<Dim Name="Frequency">5</Dim>
<Dim Name="Frequency_Modulus_Phase">3</Dim>
<Stream Type="Local" Delimiter=" ">
0 1 0
1000 1 0
2000 1 0
3000 1 0
4000 1 0
</Stream>
</Array>
<Array Name="CavityFactor" Type="float">
<Dim Name="GPS">21</Dim>
<Dim Name="GPS_Value">2</Dim>
<Stream Type="Local" Delimiter=" ">
1300000000 1.0
1310000000 1.0
1320000000 1.0
1330000000 1.0
1340000000 1.0
1350000000 1.0
1360000000 1.0
1370000000 1.0
1380000000 1.0
1390000000 1.0
1400000000 1.0
1410000000 1.0
1420000000 1.0
1430000000 1.0
1440000000 1.0
1450000000 1.0
1460000000 1.0
1470000000 1.0
1480000000 1.0
1490000000 1.0
1500000000 1.0
</Stream>
</Array>
<Array Name="OLoopFactor" Type="float">
<Dim Name="GPS">21</Dim>
<Dim Name="GPS_Value">2</Dim>
<Stream Type="Local" Delimiter=" ">
1300000000 1.0
1310000000 1.0
1320000000 1.0
1330000000 1.0
1340000000 1.0
1350000000 1.0
1360000000 1.0
1370000000 1.0
1380000000 1.0
1390000000 1.0
1400000000 1.0
1410000000 1.0
1420000000 1.0
1430000000 1.0
1440000000 1.0
1450000000 1.0
1460000000 1.0
1470000000 1.0
1480000000 1.0
1490000000 1.0
1500000000 1.0
</Stream>
</Array>
</LIGO_LW>
</LIGO_LW>
<?xml version="1.0"?>
<!DOCTYPE LIGO_LW SYSTEM "http://ldas-sw.ligo.caltech.edu/doc/ligolwAPI/html/ligolw_dtd.txt">
<LIGO_LW>
<LIGO_LW>
<Param Name="Channel">H1:GDS-CALIB_STRAIN_NOLINES</Param>
<Param Name="Comment">H1 nolines hoft unit calibration</Param>
<Time Name="StartTime" Type="GPS">1300000000</Time>
<Param Name="Duration" Type="double">200000000</Param>
<Array Name="OpenLoopGain" Type="float">
<Dim Name="Frequency">5</Dim>
<Dim Name="Frequency_Modulus_Phase">3</Dim>
<Stream Type="Local" Delimiter=" ">
0 0 0
1000 0 0
2000 0 0
3000 0 0
4000 0 0
</Stream>
</Array>
<Array Name="SensingFunction" Type="float">
<Dim Name="Frequency">5</Dim>
<Dim Name="Frequency_Modulus_Phase">3</Dim>
<Stream Type="Local" Delimiter=" ">
0 1 0
1000 1 0
2000 1 0
3000 1 0
4000 1 0
</Stream>
</Array>
<Array Name="CavityFactor" Type="float">
<Dim Name="GPS">21</Dim>
<Dim Name="GPS_Value">2</Dim>
<Stream Type="Local" Delimiter=" ">
1300000000 1.0
1310000000 1.0
1320000000 1.0
1330000000 1.0
1340000000 1.0
1350000000 1.0
1360000000 1.0
1370000000 1.0
1380000000 1.0
1390000000 1.0
1400000000 1.0
1410000000 1.0
1420000000 1.0
1430000000 1.0
1440000000 1.0
1450000000 1.0
1460000000 1.0
1470000000 1.0
1480000000 1.0
1490000000 1.0
1500000000 1.0
</Stream>
</Array>
<Array Name="OLoopFactor" Type="float">
<Dim Name="GPS">20</Dim>
<Dim Name="GPS_Value">2</Dim>
<Stream Type="Local" Delimiter=" ">
1300000000 1.0
1310000000 1.0
1320000000 1.0
1330000000 1.0
1340000000 1.0
1350000000 1.0
1360000000 1.0
1370000000 1.0
1380000000 1.0
1390000000 1.0
1400000000 1.0
1410000000 1.0
1420000000 1.0
1430000000 1.0
1440000000 1.0
1450000000 1.0
1460000000 1.0
1470000000 1.0
1480000000 1.0
1490000000 1.0
1500000000 1.0
</Stream>
</Array>
</LIGO_LW>
</LIGO_LW>
<?xml version="1.0"?>
<!DOCTYPE LIGO_LW SYSTEM "http://ldas-sw.ligo.caltech.edu/doc/ligolwAPI/html/ligolw_dtd.txt">
<LIGO_LW>
<LIGO_LW>
<Param Name="Channel">L1:GDS-CALIB_STRAIN_NOLINES</Param>
<Param Name="Comment">L1 nolines hoft unit calibration</Param>
<Time Name="StartTime" Type="GPS">1300000000</Time>
<Param Name="Duration" Type="double">200000000</Param>
<Array Name="OpenLoopGain" Type="float">
<Dim Name="Frequency">5</Dim>
<Dim Name="Frequency_Modulus_Phase">3</Dim>
<Stream Type="Local" Delimiter=" ">
0 0 0
1000 0 0
2000 0 0
3000 0 0
4000 0 0
</Stream>
</Array>
<Array Name="SensingFunction" Type="float">
<Dim Name="Frequency">5</Dim>
<Dim Name="Frequency_Modulus_Phase">3</Dim>
<Stream Type="Local" Delimiter=" ">
0 1 0
1000 1 0
2000 1 0
3000 1 0
4000 1 0
</Stream>
</Array>
<Array Name="CavityFactor" Type="float">
<Dim Name="GPS">21</Dim>
<Dim Name="GPS_Value">2</Dim>
<Stream Type="Local" Delimiter=" ">
1300000000 1.0
1310000000 1.0
1320000000 1.0
1330000000 1.0
1340000000 1.0
1350000000 1.0
1360000000 1.0
1370000000 1.0
1380000000 1.0
1390000000 1.0
1400000000 1.0
1410000000 1.0
1420000000 1.0
1430000000 1.0
1440000000 1.0
1450000000 1.0
1460000000 1.0
1470000000 1.0
1480000000 1.0
1490000000 1.0
1500000000 1.0
</Stream>
</Array>
<Array Name="OLoopFactor" Type="float">
<Dim Name="GPS">21</Dim>
<Dim Name="GPS_Value">2</Dim>
<Stream Type="Local" Delimiter=" ">
1300000000 1.0
1310000000 1.0
1320000000 1.0
1330000000 1.0
1340000000 1.0
1350000000 1.0
1360000000 1.0
1370000000 1.0
1380000000 1.0
1390000000 1.0
1400000000 1.0
1410000000 1.0
1420000000 1.0
1430000000 1.0
1440000000 1.0
1450000000 1.0
1460000000 1.0
1470000000 1.0
1480000000 1.0
1490000000 1.0
1500000000 1.0
</Stream>
</Array>
</LIGO_LW>
</LIGO_LW>
% This is a test configuration.
default {
blockDuration: 64
extraBlockOverlap: 0
doubleWhiten: 0
highPassCutoff: 8
qRange: [ 3.316625 100 ]
frequencyRange: [32 Inf]
maximumMismatch: 0.2
analysisMode: 'independent'
outlierFactor: 2.0
eventThreshold: 13.0
maximumSignificants: 1e6
maximumTriggers: 1e5
durationInflation: 1.0
bandwidthInflation: 1.0
applyClustering: 0
distanceMetric: 'integratedMismatch'
clusterMethod: 'density'
clusterRadius: 4.0
clusterDensity: 3.0
clusterSingles: 1
writeClusters: 0
bayesian: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
}
imc_16kHz {
channelNames: {"H1:GDS-CALIB_STRAIN"}
frameTypes: {"LHO_hoft"}
stateNames: {"H1:GDS-CALIB_STATE_VECTOR"}
stateTypes: {"LHO_hoft"}
stateMasks: [0]
oscFile: "h1_locked.osc"
oscFrameType: "LHO_Online"
oscConditions: {"H1:IFO_LOCKED"}
sampleFrequency: 8192.0
durationInflation: 5.0
bandwidthInflation: 5.0
triggerFiles: {"DOWNSELECT"}
triggerPrefix: {"H1-GDS_CALIB_STRAIN_OmegaC"}
}
% This is a test configuration.
hoft_16kHz {
channelNames: {"H1:GDS-CALIB_STRAIN"}
frameTypes: {"LHO_hoft"}
stateNames: {"H1:GDS-CALIB_STATE_VECTOR"}
stateTypes: {"LHO_hoft"}
stateMasks: [0]
oscFile: "h1_locked.osc"
oscFrameType: "LHO_Online"
oscConditions: {"H1:IFO_LOCKED"}
sampleFrequency: 8192.0
blockDuration: 64
doubleWhiten: 0
highPassCutoff: 8
qRange: [ 3.316625 100 ]
frequencyRange: [32 Inf]
maximumMismatch: 0.2
outlierFactor: 2.0
eventThreshold: 13.0
maximumSignificants: 1000000
maximumTriggers: 100000
applyClustering: 0
writeClusters: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'q', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
durationInflation: 5.0
bandwidthInflation: 5.0
triggerTypes: {"DOWNSELECT"}
triggerFiles: {"H1-GDS_CALIB_STRAIN_OmegaC"}
}
% This is a test configuration.
default {
blockDuration: 64
extraBlockOverlap: 1
doubleWhiten: 0
qRange: [ 3.3166247903554 141.4213562 ]
frequencyRange: [8 Inf]
maximumMismatch: 0.2
analysisMode: 'independent'
outlierFactor: 2.0
falseEventRate: 0.1
maximumSignificants: 1e6
maximumTriggers: 1e5
durationInflation: 1.0
bandwidthInflation: 1.0
applyClustering: 1
distanceMetric: 'integratedMismatch'
clusterMethod: 'density'
clusterRadius: 4.0
clusterDensity: 3.0
clusterSingles: 1
writeClusters: 1
bayesian: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
}
chan_psl_32kHz {
channelNames: {"H1:PSL-FSS_FAST_MON_OUT_DQ" "H1:PSL-FSS_MIXER_OUT_DQ" "H1:PSL-FSS_PC_MON_OUT_DQ" "H1:PSL-FSS_TPD_DC_OUT_DQ" "H1:PSL-ILS_HV_MON_OUT_DQ" "H1:PSL-ILS_MIXER_OUT_DQ" "H1:PSL-ISS_AOM_DRIVER_MON_OUT_DQ" "H1:PSL-ISS_PDA_OUT_DQ" "H1:PSL-ISS_PDB_OUT_DQ" "H1:PSL-PMC_HV_MON_OUT_DQ" "H1:PSL-PMC_MIXER_OUT_DQ" "H1:PSL-PWR_HPL_DC_OUT_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R"}
timeShifts: [0]
stateNames: {}
stateTypes: {}
stateMasks: []
sampleFrequency: 8192
frequencyRange: [16 Inf]
applyClustering: 1
}
chan_psl_16kHz {
channelNames: {"H1:PSL-OSC_PD_AMP_DC_OUT_DQ" "H1:PSL-OSC_PD_BP_DC_OUT_DQ" "H1:PSL-OSC_PD_INT_DC_OUT_DQ" "H1:PSL-OSC_PD_ISO_DC_OUT_DQ"}
frameTypes: {"R" "R" "R" "R"}
timeShifts: [0]
stateNames: {}
stateTypes: {}
stateMasks: []
sampleFrequency: 8192
frequencyRange: [16 Inf]
applyClustering: 1
}
chan_psl_4kHz {
channelNames: {"H1:PSL-ISS_QPD_DX_OUT_DQ" "H1:PSL-ISS_QPD_DY_OUT_DQ"}
frameTypes: {"R" "R"}
timeShifts: [0]
stateNames: {}
stateTypes: {}
stateMasks: []
sampleFrequency: 4096
frequencyRange: [16 Inf]
applyClustering: 1
}
chan_pem_16kHz {
channelNames: {"H1:PEM-CS_MIC_EBAY_RACKS_DQ" "H1:PEM-CS_MIC_LVEA_VERTEX_DQ" "H1:PEM-CS_MIC_YMAN_SPOOL_DQ"}
frameTypes: {"R" "R" "R"}
timeShifts: [0]
stateNames: {}
stateTypes: {}
stateMasks: []
sampleFrequency: 8192
frequencyRange: [16 Inf]
applyClustering: 1
}
chan_pem_8kHz {
channelNames: {"H1:PEM-CS_ACC_BEAMTUBE_YMAN_Z_DQ" "H1:PEM-CS_ACC_BSC1_ITMY_X_DQ" "H1:PEM-CS_ACC_BSC1_ITMY_Y_DQ" "H1:PEM-CS_ACC_BSC1_ITMY_Z_DQ" "H1:PEM-CS_ACC_EBAY_FLOOR_Z_DQ" "H1:PEM-CS_ACC_FLOOR_YCRYO_Z_DQ" "H1:PEM-CS_ACC_OPLEV_ITMY_X_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R"}
timeShifts: [0]
stateNames: {}
stateTypes: {}
stateMasks: []
sampleFrequency: 4096
frequencyRange: [16 Inf]
applyClustering: 1
}
chan_pem_4kHz {
channelNames: {"H1:PEM-CS_MAG_EBAY_SEIRACK_X_DQ" "H1:PEM-CS_MAG_EBAY_SEIRACK_Y_DQ" "H1:PEM-CS_MAG_EBAY_SEIRACK_Z_DQ" "H1:PEM-CS_MAG_EBAY_SUSRACK_X_DQ" "H1:PEM-CS_MAG_EBAY_SUSRACK_Y_DQ" "H1:PEM-CS_MAG_EBAY_SUSRACK_Z_DQ" "H1:PEM-CS_MAG_LVEA_VERTEX_X_DQ" "H1:PEM-CS_MAG_LVEA_VERTEX_Y_DQ" "H1:PEM-CS_MAG_LVEA_VERTEX_Z_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R" "R" "R"}
timeShifts: [0]
stateNames: {}
stateTypes: {}
stateMasks: []
sampleFrequency: 2048
frequencyRange: [16 Inf]
applyClustering: 1
}
chan_pem_seis {
channelNames: {"H1:PEM-CS_SEIS_LVEA_VERTEX_X_DQ" "H1:PEM-CS_SEIS_LVEA_VERTEX_Y_DQ" "H1:PEM-CS_SEIS_LVEA_VERTEX_Z_DQ" "H1:PEM-CS_SEIS_LVEA_VERTEX_QUAD_SUM_DQ"}
frameTypes: {"R" "R" "R" "R"}
timeShifts: [0]
stateNames: {}
stateTypes: {}
stateMasks: []
sampleFrequency: 256
frequencyRange: [16 Inf]
applyClustering: 1
}
% This is a test configuration.
default {
blockDuration: 64
extraBlockOverlap: 1
doubleWhiten: 0
qRange: [ 3.316625 141 ]
frequencyRange: [16 Inf]
maximumMismatch: 0.2
analysisMode: 'independent'
outlierFactor: 2.0
eventThreshold: 37.0
maximumSignificants: 1e6
maximumTriggers: 1e5
durationInflation: 1.0
bandwidthInflation: 1.0
applyClustering: 1
distanceMetric: 'integratedMismatch'
clusterMethod: 'density'
clusterRadius: 4.0
clusterDensity: 3.0
clusterSingles: 1
writeClusters: 1
bayesian: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
}
imc_16kHz {
channelNames: {"H1:IMC-F_OUT_DQ" "H1:IMC-I_OUT_DQ" "H1:IMC-L_OUT_DQ" "H1:IMC-REFL_DC_OUT_DQ" "H1:IMC-TRANS_OUT_DQ"}
frameTypes: {"R" "R" "R" "R" "R"}
sampleFrequency: 4096.0
}
imc_2kHz {
channelNames: {"H1:IMC-MC2_PIT_OUT_DQ" "H1:IMC-MC2_TRANS_PIT_OUT_DQ" "H1:IMC-MC2_TRANS_SUM_IN1_DQ" "H1:IMC-MC2_TRANS_SUM_OUT_DQ" "H1:IMC-MC2_TRANS_YAW_OUT_DQ" "H1:IMC-MC2_YAW_OUT_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R"}
sampleFrequency: 2048.0
}
pem_8kHz {
channelNames: {"H1:PEM-CS_ACC_BEAMTUBE_YMAN_Z_DQ" "H1:PEM-CS_ACC_BSC1_ITMY_X_DQ" "H1:PEM-CS_ACC_BSC1_ITMY_Y_DQ" "H1:PEM-CS_ACC_BSC1_ITMY_Z_DQ" "H1:PEM-CS_ACC_EBAY_FLOOR_Z_DQ" "H1:PEM-CS_ACC_FLOOR_YCRYO_Z_DQ" "H1:PEM-CS_ACC_OPLEV_ITMY_X_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R"}
sampleFrequency: 4096.0
}
pem_4kHz {
channelNames: {"H1:PEM-CS_MAG_EBAY_SEIRACK_QUAD_SUM_DQ" "H1:PEM-CS_MAG_EBAY_SEIRACK_X_DQ" "H1:PEM-CS_MAG_EBAY_SEIRACK_Y_DQ" "H1:PEM-CS_MAG_EBAY_SEIRACK_Z_DQ" "H1:PEM-CS_MAG_EBAY_SUSRACK_QUAD_SUM_DQ" "H1:PEM-CS_MAG_EBAY_SUSRACK_X_DQ" "H1:PEM-CS_MAG_EBAY_SUSRACK_Y_DQ" "H1:PEM-CS_MAG_EBAY_SUSRACK_Z_DQ" "H1:PEM-CS_MAG_LVEA_VERTEX_QUAD_SUM_DQ" "H1:PEM-CS_MAG_LVEA_VERTEX_X_DQ" "H1:PEM-CS_MAG_LVEA_VERTEX_Y_DQ" "H1:PEM-CS_MAG_LVEA_VERTEX_Z_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R"}
sampleFrequency: 4096.0
}
pem_16kHz {
channelNames: {"H1:PEM-CS_MIC_EBAY_RACKS_DQ" "H1:PEM-CS_MIC_LVEA_VERTEX_DQ" "H1:PEM-CS_MIC_YMAN_SPOOL_DQ"}
frameTypes: {"R" "R" "R"}
sampleFrequency: 4096.0
}
sus_itmy_2kHz {
channelNames: {"H1:SUS-ITMY_L2_MASTER_OUT_LL_DQ" "H1:SUS-ITMY_L2_MASTER_OUT_LR_DQ" "H1:SUS-ITMY_L2_MASTER_OUT_UL_DQ" "H1:SUS-ITMY_L2_MASTER_OUT_UR_DQ" "H1:SUS-ITMY_L3_MASTER_OUT_LL_DQ" "H1:SUS-ITMY_L3_MASTER_OUT_LR_DQ" "H1:SUS-ITMY_L3_MASTER_OUT_UL_DQ" "H1:SUS-ITMY_L3_MASTER_OUT_UR_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R" "R"}
sampleFrequency: 2048.0
}
sus_mc2_2kHz {
channelNames: {"H1:SUS-MC2_M3_MASTER_OUT_LL_DQ" "H1:SUS-MC2_M3_MASTER_OUT_LR_DQ" "H1:SUS-MC2_M3_MASTER_OUT_UL_DQ" "H1:SUS-MC2_M3_MASTER_OUT_UR_DQ"}
frameTypes: {"R" "R" "R" "R"}
sampleFrequency: 2048.0
}
isi_ham3_2kHz {
channelNames: {"H1:ISI-HAM3_BLND_GS13RX_IN1_DQ" "H1:ISI-HAM3_BLND_GS13RY_IN1_DQ" "H1:ISI-HAM3_BLND_GS13RZ_IN1_DQ" "H1:ISI-HAM3_BLND_GS13X_IN1_DQ" "H1:ISI-HAM3_BLND_GS13Y_IN1_DQ" "H1:ISI-HAM3_BLND_GS13Z_IN1_DQ" "H1:ISI-HAM3_MASTER_H1_DRIVE_DQ" "H1:ISI-HAM3_MASTER_H2_DRIVE_DQ" "H1:ISI-HAM3_MASTER_H3_DRIVE_DQ" "H1:ISI-HAM3_MASTER_V1_DRIVE_DQ" "H1:ISI-HAM3_MASTER_V2_DRIVE_DQ" "H1:ISI-HAM3_MASTER_V3_DRIVE_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R"}
sampleFrequency: 2048.0
}
isi_itmy_2kHz {
channelNames: {"H1:ISI-ITMY_ST1_BLND_RX_L4C_CUR_IN1_DQ" "H1:ISI-ITMY_ST1_BLND_RY_L4C_CUR_IN1_DQ" "H1:ISI-ITMY_ST1_BLND_RZ_L4C_CUR_IN1_DQ" "H1:ISI-ITMY_ST1_BLND_X_L4C_CUR_IN1_DQ" "H1:ISI-ITMY_ST1_BLND_Y_L4C_CUR_IN1_DQ" "H1:ISI-ITMY_ST1_BLND_Z_L4C_CUR_IN1_DQ" "H1:ISI-ITMY_ST2_BLND_RX_GS13_CUR_IN1_DQ" "H1:ISI-ITMY_ST2_BLND_RY_GS13_CUR_IN1_DQ" "H1:ISI-ITMY_ST2_BLND_RZ_GS13_CUR_IN1_DQ" "H1:ISI-ITMY_ST2_BLND_X_GS13_CUR_IN1_DQ" "H1:ISI-ITMY_ST2_BLND_Y_GS13_CUR_IN1_DQ" "H1:ISI-ITMY_ST2_BLND_Z_GS13_CUR_IN1_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R"}
sampleFrequency: 2048.0
}
psl_iss_32kHz {
channelNames: {"H1:PSL-ISS_AOM_DRIVER_MON_OUT_DQ" "H1:PSL-ISS_PDA_OUT_DQ" "H1:PSL-ISS_PDB_OUT_DQ" "H1:PSL-ISS_QPD_DX_OUT_DQ" "H1:PSL-ISS_QPD_DY_OUT_DQ"}
frameTypes: {"R" "R" "R" "R" "R"}
sampleFrequency: 4096.0
}
psl_fss_32kHz {
channelNames: {"H1:PSL-FSS_FAST_MON_OUT_DQ" "H1:PSL-FSS_MIXER_OUT_DQ" "H1:PSL-FSS_PC_MON_OUT_DQ" "H1:PSL-FSS_TPD_DC_OUT_DQ"}
frameTypes: {"R" "R" "R" "R"}
sampleFrequency: 4096.0
}
psl_misc_32kHz {
channelNames: {"H1:PSL-ILS_HV_MON_OUT_DQ" "H1:PSL-ILS_MIXER_OUT_DQ" "H1:PSL-PMC_HV_MON_OUT_DQ" "H1:PSL-PMC_MIXER_OUT_DQ" "H1:PSL-PWR_HPL_DC_OUT_DQ"}
frameTypes: {"R" "R" "R" "R" "R"}
sampleFrequency: 4096.0
}
psl_osc_16kHz {
channelNames: {"H1:PSL-OSC_PD_AMP_DC_OUT_DQ" "H1:PSL-OSC_PD_BP_DC_OUT_DQ" "H1:PSL-OSC_PD_INT_DC_OUT_DQ" "H1:PSL-OSC_PD_ISO_DC_OUT_DQ"}
frameTypes: {"R" "R" "R" "R"}
sampleFrequency: 4096.0
}
pem_ey_8kHz {
channelNames: {"H1:PEM-EY_ACC_EBAY_FLOOR_Z_DQ" "H1:PEM-EY_ACC_ISCEY_TRANS_X_DQ" "H1:PEM-EY_ACC_OPLEV_ETMY_X_DQ"}
frameTypes: {"R" "R" "R"}
sampleFrequency: 4096.0
}
pem_ey_4KHz {
channelNames: {"H1:PEM-EY_MAG_EBAY_SEIRACK_QUAD_SUM_DQ" "H1:PEM-EY_MAG_EBAY_SEIRACK_X_DQ" "H1:PEM-EY_MAG_EBAY_SEIRACK_Y_DQ" "H1:PEM-EY_MAG_EBAY_SEIRACK_Z_DQ" "H1:PEM-EY_MAG_EBAY_SUSRACK_QUAD_SUM_DQ" "H1:PEM-EY_MAG_EBAY_SUSRACK_X_DQ" "H1:PEM-EY_MAG_EBAY_SUSRACK_Y_DQ" "H1:PEM-EY_MAG_EBAY_SUSRACK_Z_DQ" "H1:PEM-EY_MAG_VEA_FLOOR_QUAD_SUM_DQ" "H1:PEM-EY_MAG_VEA_FLOOR_X_DQ" "H1:PEM-EY_MAG_VEA_FLOOR_Y_DQ" "H1:PEM-EY_MAG_VEA_FLOOR_Z_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R"}
sampleFrequency: 4096.0
}
pem_ey_16kHz {
channelNames: {"H1:PEM-EY_MIC_EBAY_RACKS_DQ"}
frameTypes: {"R"}
sampleFrequency: 4096.0
}
als_y_2kHz {
channelNames: {"H1:ALS-Y_FIBR_A_LF_OUT_DQ" "H1:ALS-Y_FIBR_REJECTED_LF_OUT_DQ" "H1:ALS-Y_FIBR_TRANS_LF_OUT_DQ" "H1:ALS-Y_LASER_GR_LF_OUT_DQ" "H1:ALS-Y_LASER_IR_LF_OUT_DQ" "H1:ALS-Y_REFL_B_LF_OUT_DQ" "H1:ALS-Y_SPARE_B_LF_OUT_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R"}
sampleFrequency: 2048.0
}
sus_etmy_2kHz {
channelNames: {"H1:SUS-ETMY_L2_MASTER_OUT_LL_DQ" "H1:SUS-ETMY_L2_MASTER_OUT_LR_DQ" "H1:SUS-ETMY_L2_MASTER_OUT_UL_DQ" "H1:SUS-ETMY_L2_MASTER_OUT_UR_DQ" "H1:SUS-ETMY_L3_MASTER_OUT_LL_DQ" "H1:SUS-ETMY_L3_MASTER_OUT_LR_DQ" "H1:SUS-ETMY_L3_MASTER_OUT_UL_DQ" "H1:SUS-ETMY_L3_MASTER_OUT_UR_DQ" "H1:ISI-ETMY_ST1_BLND_RX_L4C_CUR_IN1_DQ" "H1:ISI-ETMY_ST1_BLND_RY_L4C_CUR_IN1_DQ" "H1:ISI-ETMY_ST1_BLND_RZ_L4C_CUR_IN1_DQ" "H1:ISI-ETMY_ST1_BLND_X_L4C_CUR_IN1_DQ" "H1:ISI-ETMY_ST1_BLND_Y_L4C_CUR_IN1_DQ" "H1:ISI-ETMY_ST1_BLND_Z_L4C_CUR_IN1_DQ" "H1:ISI-ETMY_ST2_BLND_RX_GS13_CUR_IN1_DQ" "H1:ISI-ETMY_ST2_BLND_RY_GS13_CUR_IN1_DQ" "H1:ISI-ETMY_ST2_BLND_RZ_GS13_CUR_IN1_DQ" "H1:ISI-ETMY_ST2_BLND_X_GS13_CUR_IN1_DQ" "H1:ISI-ETMY_ST2_BLND_Y_GS13_CUR_IN1_DQ" "H1:ISI-ETMY_ST2_BLND_Z_GS13_CUR_IN1_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R"}
sampleFrequency: 2048.0
}
% This is a test configuration.
default {
blockDuration: 64
extraBlockOverlap: 0
doubleWhiten: 0
highPassCutoff: 8
qRange: [ 3.316625 100 ]
frequencyRange: [32 Inf]
maximumMismatch: 0.2
analysisMode: 'independent'
outlierFactor: 2.0
eventThreshold: 13.0
maximumSignificants: 1e6
maximumTriggers: 1e5
durationInflation: 1.0
bandwidthInflation: 1.0
applyClustering: 0
distanceMetric: 'integratedMismatch'
clusterMethod: 'density'
clusterRadius: 4.0
clusterDensity: 3.0
clusterSingles: 1
writeClusters: 0
bayesian: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
}
imc_16kHz {
channelNames: {"H1:GDS-CALIB_STRAIN"}
frameTypes: {"LHO_hoft"}
stateNames: {"H1:GDS-CALIB_STATE_VECTOR"}
stateTypes: {"LHO_hoft"}
stateMasks: [5]
sampleFrequency: 8192.0
triggerFiles: {"DOWNSELECT"}
triggerPrefix: {"H1-GDS_CALIB_STRAIN_OmegaC"}
}
......@@ -4,10 +4,7 @@ hoft_16kHz {
frameTypes: {"LHO_hoft"}
stateNames: {"H1:GDS-CALIB_STATE_VECTOR"}
stateTypes: {"LHO_hoft"}
stateMasks: [0]
oscFile: "h1_locked.osc"
oscFrameType: "LHO_Online"
oscConditions: {"H1:IFO_LOCKED"}
stateMasks: [1]
sampleFrequency: 8192.0
blockDuration: 64
doubleWhiten: 0
......
......@@ -4,10 +4,7 @@ hoft_16kHz {
frameTypes: {"LHO_hoft"}
stateNames: {"H1:GDS-CALIB_STATE_VECTOR_TEST"}
stateTypes: {"LHO_hoft"}
stateMasks: [0]
oscFile: "h1_locked.osc"
oscFrameType: "LHO_Online"
oscConditions: {"H1:IFO_LOCKED"}
stateMasks: [1]
sampleFrequency: 8192.0
blockDuration: 64
doubleWhiten: 0
......
% This is a test configuration.
default {
blockDuration: 64
extraBlockOverlap: 0
doubleWhiten: 0
highPassCutoff: 8
qRange: [ 3.316625 100 ]
frequencyRange: [32 Inf]
maximumMismatch: 0.2
analysisMode: 'independent'
outlierFactor: 2.0
eventThreshold: 13.0
maximumSignificants: 1e6
maximumTriggers: 1e5
durationInflation: 1.0
bandwidthInflation: 1.0
applyClustering: 0
distanceMetric: 'integratedMismatch'
clusterMethod: 'density'
clusterRadius: 4.0
clusterDensity: 3.0
clusterSingles: 1
writeClusters: 0
bayesian: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
}
imc_16kHz {
channelNames: {"H1:GDS-CALIB_STRAIN"}
frameTypes: {"LHO_hoft"}
stateNames: {"H1:GDS-CALIB_STATE_VECTOR"}
stateTypes: {"LHO_hoft"}
stateMasks: [0]
sampleFrequency: 8192.0
durationInflation: 5.0
bandwidthInflation: 5.0
triggerFiles: {"DOWNSELECT"}
triggerPrefix: {"H1-GDS_CALIB_STRAIN_OmegaC"}
}
% This is a test configuration.
hoft_16kHz {
channelNames: {"H1:GDS-CALIB_STRAIN"}
frameTypes: {"LHO_hoft"}
stateNames: {"H1:GDS-CALIB_STATE_VECTOR"}
stateTypes: {"LHO_hoft"}
stateMasks: [0]
oscFile: "h1_locked.osc"
oscFrameType: "LHO_Online"
oscConditions: {"H1:IFO_LOCKED"}
sampleFrequency: 8192.0
blockDuration: 64
doubleWhiten: 0
highPassCutoff: -1
qRange: [ 3.316625 50 ]
frequencyRange: [10 Inf]
maximumMismatch: 0.2
outlierFactor: 2.0
eventThreshold: 13.0
maximumSignificants: 1000000
maximumTriggers: 100000
applyClustering: 0
writeClusters: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'q', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
durationInflation: 5.0
bandwidthInflation: 5.0
triggerTypes: {"DOWNSELECT"}
triggerFiles: {"H1-GDS_CALIB_STRAIN_OmegaC"}
}
% This is a test configuration.
hoft_16kHz {
channelNames: {"H1:GDS-CALIB_STRAIN_TEST"}
frameTypes: {"LHO_hoft"}
stateNames: {"H1:GDS-CALIB_STATE_VECTOR_TEST"}
stateTypes: {"LHO_hoft"}
stateMasks: [0]
oscFile: "h1_locked.osc"
oscFrameType: "LHO_Online"
oscConditions: {"H1:IFO_LOCKED"}
sampleFrequency: 8192.0
blockDuration: 64
doubleWhiten: 0
highPassCutoff: -1
qRange: [ 3.316625 50 ]
frequencyRange: [10 Inf]
maximumMismatch: 0.2
outlierFactor: 2.0
eventThreshold: 13.0
maximumSignificants: 1000000
maximumTriggers: 100000
applyClustering: 0
writeClusters: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'q', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
durationInflation: 5.0
bandwidthInflation: 5.0
triggerTypes: {"DOWNSELECT"}
triggerFiles: {"H1-GDS_CALIB_STRAIN_OmegaC"}
}
dq-stream-LHO_Online.txt
dq-stream-LHO_hoft.txt
% This is a test configuration.
default {
blockDuration: 64
extraBlockOverlap: 0
doubleWhiten: 0
highPassCutoff: 8
qRange: [ 3.316625 100 ]
frequencyRange: [32 Inf]
maximumMismatch: 0.2
analysisMode: 'independent'
outlierFactor: 2.0
eventThreshold: 13.0
maximumSignificants: 1e6
maximumTriggers: 1e5
durationInflation: 1.0
bandwidthInflation: 1.0
applyClustering: 0
distanceMetric: 'integratedMismatch'
clusterMethod: 'density'
clusterRadius: 4.0
clusterDensity: 3.0
clusterSingles: 1
writeClusters: 0
bayesian: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
}
imc_16kHz {
channelNames: {"L1:GDS-CALIB_STRAIN"}
frameTypes: {"LLO_hoft"}
stateNames: {"L1:GDS-CALIB_STATE_VECTOR"}
stateTypes: {"LLO_hoft"}
stateMasks: [0]
oscFile: "l1_locked.osc"
oscFrameType: "LLO_Online"
oscConditions: {"L1:IFO_LOCKED"}
sampleFrequency: 8192.0
durationInflation: 5.0
bandwidthInflation: 5.0
triggerFiles: {"DOWNSELECT"}
triggerPrefix: {"L1-GDS_CALIB_STRAIN_OmegaC"}
}
% This is a test configuration.
default {
blockDuration: 64
extraBlockOverlap: 0
doubleWhiten: 0
highPassCutoff: 8
qRange: [ 3.316625 100 ]
frequencyRange: [32 Inf]
maximumMismatch: 0.2
analysisMode: 'independent'
outlierFactor: 2.0
eventThreshold: 13.0
maximumSignificants: 1000000
maximumTriggers: 100000
durationInflation: 1.0
bandwidthInflation: 1.0
applyClustering: 0
distanceMetric: 'integratedMismatch'
clusterMethod: 'density'
clusterRadius: 4.0
clusterDensity: 3.0
clusterSingles: 1
writeClusters: 0
bayesian: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'q', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
}
imc_16kHz {
channelNames: {"L1:GDS-CALIB_STRAIN"}
frameTypes: {"LLO_hoft"}
stateNames: {"L1:GRD-ISC_LOCK_OK"}
stateTypes: {"LLO_Online"}
stateMasks: [1]
sampleFrequency: 8192.0
durationInflation: 5.0
bandwidthInflation: 5.0
triggerTypes: {"DOWNSELECT"}
triggerFiles: {"L1-GDS_CALIB_STRAIN_OmegaC"}
}
% This is a test configuration.
default {
blockDuration: 64
extraBlockOverlap: 1
doubleWhiten: 0
qRange: [ 3.3166247903554 141.4213562 ]
frequencyRange: [16 Inf]
maximumMismatch: 0.2
analysisMode: 'independent'
outlierFactor: 2.0
falseEventRate: 0.1
maximumSignificants: 1e6
maximumTriggers: 1e5
durationInflation: 1.0
bandwidthInflation: 1.0
applyClustering: 1
distanceMetric: 'integratedMismatch'
clusterMethod: 'density'
clusterRadius: 4.0
clusterDensity: 3.0
clusterSingles: 1
writeClusters: 1
bayesian: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
}
chan_psl_32kHz {
channelNames: {"L1:PSL-ISS_AOM_DRIVER_MON_OUT_DQ" "L1:PSL-ISS_PDA_OUT_DQ" "L1:PSL-ISS_PDB_OUT_DQ" "L1:PSL-FSS_FAST_MON_OUT_DQ" "L1:PSL-FSS_MIXER_OUT_DQ" "L1:PSL-FSS_PC_MON_OUT_DQ" "L1:PSL-FSS_TPD_DC_OUT_DQ" "L1:PSL-ILS_HV_MON_OUT_DQ" "L1:PSL-ILS_MIXER_OUT_DQ" "L1:PSL-PMC_HV_MON_OUT_DQ" "L1:PSL-PMC_MIXER_OUT_DQ" "L1:PSL-PWR_HPL_DC_OUT_DQ"}
frameTypes: {"R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R" "R"}
timeShifts: [0]
stateNames: {}
stateTypes: {}
stateMasks: []
sampleFrequency: 8192
applyClustering: 1
}
chan_psl_16kHz {
channelNames: {"L1:PSL-OSC_PD_AMP_DC_OUT_DQ" "L1:PSL-OSC_PD_BP_DC_OUT_DQ" "L1:PSL-OSC_PD_INT_DC_OUT_DQ" "L1:PSL-OSC_PD_ISO_DC_OUT_DQ"}
frameTypes: {"R" "R" "R" "R"}
timeShifts: [0]
stateNames: {}
stateTypes: {}
stateMasks: []
sampleFrequency: 4096
applyClustering: 1
}
chan_psl_4kHz {
channelNames: {"L1:PSL-ISS_QPD_DX_OUT_DQ" "L1:PSL-ISS_QPD_DY_OUT_DQ"}
frameTypes: {"R" "R"}
timeShifts: [0]
stateNames: {}
stateTypes: {}
stateMasks: []
sampleFrequency: 2048
applyClustering: 1
}
chan_pem_2kHz {
channelNames: {"L1:PEM-CS_ACC_PSL_PERISCOPE_X_OUT_DQ" "L1:PEM-CS_ACC_PSL_TABLE1_X_OUT_DQ" "L1:PEM-CS_ACC_PSL_TABLE1_Y_OUT_DQ" "L1:PEM-CS_ACC_PSL_TABLE1_Z_OUT_DQ" "L1:PEM-CS_MIC_PSL_CENTER_OUT_DQ"}
frameTypes: {"R" "R" "R" "R" "R"}
timeShifts: [0]
stateNames: {}
stateTypes: {}
stateMasks: []
sampleFrequency: 2048
applyClustering: 1
}
%chan_imc_16kHz {
% channelNames: {"L1:IMC-F_OUT_DQ" "L1:IMC-L_OUT_DQ" "L1:IMC-X_DQ" "L1:IMC-REFL_DC_OUT_DQ" "L1:IMC-TRANS_OUT_DQ"}
% frameTypes: {"R" "R" "R" "R" "R"}
% timeShifts: [0]
% stateNames: {}
% stateTypes: {}
% stateMasks: []
% sampleFrequency: 8192
% applyClustering: 1
%}
%chan_imc_2kHz {
% channelNames: {"L1:IMC-WFS_A_DC_SUM_OUT_DQ" "L1:IMC-WFS_B_DC_SUM_OUT_DQ" "L1:IMC-MC2_TRANS_SUM_OUT_DQ" "L1:IMC-MC2_TRANS_PIT_OUT_DQ" "L1:IMC-MC2_TRANS_YAW_OUT_DQ" "L1:IMC-IM4_TRANS_PIT_OUT_DQ" "L1:IMC-IM4_TRANS_YAW_OUT_DQ"}
% frameTypes: {"R" "R" "R" "R" "R" "R" "R"}
% timeShifts: [0]
% stateNames: {}
% stateTypes: {}
% stateMasks: []
% sampleFrequency: 2048
% applyClustering: 1
%}
% This is a test configuration.
default {
blockDuration: 64
extraBlockOverlap: 1
doubleWhiten: 0
qRange: [ 3.3166247903554 141.4213562 ]
frequencyRange: [16 Inf]
maximumMismatch: 0.2
analysisMode: 'independent'
outlierFactor: 2.0
falseEventRate: 0.1
maximumSignificants: 1e6
maximumTriggers: 1e5
durationInflation: 2.0
bandwidthInflation: 2.0
applyClustering: 1
distanceMetric: 'integratedMismatch'
clusterMethod: 'density'
clusterRadius: 4.0
clusterDensity: 3.0
clusterSingles: 1
writeClusters: 0
bayesian: 0
triggerFields: {'time', 'frequency', 'duration', 'bandwidth', 'normalizedEnergy', 'clusterSize', 'clusterNormalizedEnergy'}
triggerFormat: 'xml'
}
chan_hoft {
channelNames: {"L1:GDS-CALIB_STRAIN"}
frameTypes: {"R"}
timeShifts: [0]
stateNames: {"L1:GDS-CALIB_STATE_VECTOR"}
stateTypes: {"R"}
stateMasks: [3]
sampleFrequency: 8192
}