This documentation is intended both for QC scientists and SciOps astronomers (who may want to ignore the technical information displayed in grey).
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NAME |
hawki_science.py
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VERSION |
1.0 -- adapted from HAWKI/hawki_dark.html (Feb 2009)
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SYNTAX |
SHELL
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CALL |
hawki_science.py
from $DFS_PRODUCT/SCIENCE_IMG/$DATE:
hawki.processQC -a <AB>
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INSTRUMENT |
HAWKI
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RAWTYPE |
SCIENCE_IMG
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PURPOSE |
compares raw and product SCIENCE files
for HAWK-I QC assessment; the plots are later reviewed
within certifyProducts. All plots are stored
in $DFO_PLT_DIR/$DATE.
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PROCINPUT |
first and last raw SCIENCEs from AB; COMBINED, NOREFINE_COMB, JITTER_STATS, SCIENCE_PCS and BKG_STATS products;
currently not analyzed: BPM_HOT
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QC1TABLE |
trending | table(s) in QC1 database:
hawki_science
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TRENDPLOT |
trending | HealthCheck plot associated to this procedure: none
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QC1PAGE |
trending | associated documentation: none
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QC1PLOTS
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science_img_plt_A_1.png
So called 'PCS Plots' since the plot was derived from the PCS_STATS table.
science_img_plt_A_2.png
So called 'BKG & FWHM Plots'
science_img_ima_A_1.png
full display of each chip of the COMBINED product
(graphic created by hawki.ds9Im script run by hawki_science.py but can be run standalone also)
science_img_ima_A_2.png
closeup of central region of each chip of the COMBINED product
(graphic created by hawki.ds9Im script run by hawki_science.py but can be run standalone also)
science_img_ima_A_3.png
full display of each chip of the NOREFINE_COMB product
(graphic created by hawki.ds9Im script run by hawki_science.py but can be run standalone also)
science_img_ima_A_4.png
closeup of central region of each chip of the NOREFINE_COMB product
(graphic created by hawki.ds9Im script run by hawki_science.py but can be run standalone also)
The following 'detail' plots are not displayed by default, but are displayed on request with the 'S' option during QC report review
science_img_plt_1_1_detail.png
Standard pyqc mstplt report for Q1 consisting of:
subplot#1: plots across one row for the first and last RAW frames in the stack and the master.
The row plotted is specified as centrow in config_science.py
subplot#2: plots across one column for the first and last RAW frames in the stack and the master.
The row plotted is specified as centcol in config_science.py
subplot#3: Histograms of pixel values for the first RAW frame of the stack, the master, and a gaussian fit to the master.
subplot#4: zoom plots across one row for the first and last RAW frames in the stack and the master.
The row plotted is specified as xcentrange in config_science.py
subplot#5: zoom plots across one column for the first and last RAW frames in the stack and the master.
The row plotted is specified as ycentrange in config_science.py
subplot#6: Averages of all columns and all rows of the master
subplot#7, subplot#8 & subplot#9: Not shown as SCIENCE do not have 'references frames/ABs'
science_img_plt_2_1_detail.png
Standard pyqc mstplt report for Q2 as for Q1
science_img_plt_3_1_detail.png
Standard pyqc mstplt report for Q3 as for Q1
science_img_plt_4_1_detail.png
Standard pyqc mstplt report for Q4 as for Q1
science_img_ima_1_1_detail.png
Difference images
The first frame in the stack is subtracted from each of the other images in the stack. The central region of chip 1 is displayed
and the image is labeled with the change of the rotator angle relative to the rotator angle in the first frame.
Up to 20 frames are displayed in one graphic. As many graphics as necessary are created in order to display all difference images of the AB.
This graphic was useful during the
Pupil Ghost and Sudden Lateral Changes problem
and also the internal page here.
science_img_ima_1_2_detail.png
2nd graphic of this AB for chip 1.
science_img_ima_2_1_detail.png
Difference images for Q2 as for Q1
science_img_ima_2_2_detail.png
2nd graphic of difference images for Q2 as for Q1
science_img_ima_3_1_detail.png
Difference images for Q3 as for Q1
science_img_ima_3_2_detail.png
2nd graphic of difference images for Q3 as for Q1
science_img_ima_4_1_detail.png
Difference images for Q4 as for Q1
science_img_ima_4_2_detail.png
2nd graphic of difference images for Q4 as for Q1
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QC1PARAM |
QC1 parameters written into QC1 table:
QC1db names: qc_datancom | qc_fwhm_pix | qc_fwhm_arcsec | qc_fwhm_mode | qc_iq | qc_nbobjs | qc_backgd_instmag | qc_backgd_stdev | qc_backgd_mean | qc_combined_posx | qc_combined_posy | qc_raw_median_mean | qc_altitude_mean | qc_azimuth_mean | qc_airmass_mean | qc_ia_fwhm_mean | qc_parang_mean | qc_parang_delta_mean | qc_parang_delta_min | qc_parang_delta_max | qc_absrot_start_mean | qc_absrot_delta_mean | qc_absrot_delta_min | qc_absrot_delta_max | qc_ambi_rhum_mean | qc_ambi_tau0_mean | qc_ambi_temp_mean | qc_ambi_winddir_mean | qc_ambi_windsp_mean | qc_ambi_pres_mean | qc_ambi_fwhm_mean
FITS key names: QC.DATANCOM | QC.FWHM.PIX | QC.FWHM.ARCSEC | QC.FWHM.MODE | QC.IQ | QC.NBOBJS | QC.BACKGD.INSTMAG | QC.BACKGD.STDEV | QC.BACKGD.MEAN | QC.COMBINED.POSX | QC.COMBINED.POSY | QC.RAW.MEDIAN.MEAN | QC.TEL.ALT.MEAN | QC.TEL.AZ.MEAN | QC.TEL.AIRM.MEAN | QC.TEL.IA.FWHM.MEAN | QC.TEL.PARANG.MEAN | QC.TEL.PARANG.DELTA.MEAN | QC.TEL.PARANG.DELTA.MIN | QC.TEL.PARANG.DELTA.MAX | QC.ADA.ABSROT.START.MEAN | QC.ADA.ABSROT.DELTA.MEAN | QC.ADA.ABSROT.DELTA.MIN | QC.ADA.ABSROT.DELTA.MAX | QC.TEL.AMBI.RHUM.MEAN | QC.TEL.AMBI.TAU0.MEAN | QC.TEL.AMBI.TEMP.MEAN | QC.TEL.AMBI.WINDDIR.MEAN | QC.TEL.AMBI.WINDSP.MEAN | QC.TEL.AMBI.PRES.MEAN | QC.TEL.AMBI.FWHM.MEAN
QC1 params created by pipeline: all
QC1 params created by this procedure: None
QC1 params which should be implemented: qc_fwhm_ellipticity | qc_fwhm_orientation
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ALGORITHM |
Description of algorithms:
TBD...
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CERTIF |
Reasons for rejection:
TBD...
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COMMENTS |
None
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[2015-11-05T15:17:25] created by qcDocu v1.1.2, a tqs tool
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