wiki:NightOperations/Commissioning/Plans/20161016

20161016 Commissioning Plan

Priorities for test are in the order listed in the plan below.

Highest Priority: Engineering; do any support for Hanshin or Randy in support of Hanshin.

Lowest Priority: TOO Science

Closed dome engineering for bad weather, or while stacking:

NEW LRS cals

Please take a set of LRS cals but take 3 of each of the line lamps, ie.

$HET_SRC_ROOT/integration/cal.py -i lrs2 -l lamp1a lamp2a lamp3a -L 3 -c lamp5b ldls -C 1 -d 0 -o 2 |& tee -a lrs-cal.YYYYMMDD.log

Closed dome trajectories

Purpose: Exercise the system to find any problems with the upgrades recently done to TMCS and TCS.

Procedure:

  • Send a trajectory from do_shuffle
  • Setup on trajectory, including moving all guide probes to position
  • Put one some light in the dome
  • Run all cameras.
  • Run pipelines for WFS
  • Make offsets on all guiders and ACAM.

Repeat multiple times during the night as long as the weather does not allow you to open. Report any problems with shuffle or TCS.

Twilight Tests

start doing twilights with VIRUS with different tracker positions

Purpose: There is some interest in seeing what the long term illumination correction changes look like including what different track positions do to them. The script is "specialtwilight" in /home/mcs/astronomer/bin/. It takes a single argument which is the Observation number.

Procedure:

  • Setup the guide camera for sky twilight (GC2, 0.1 sec, B filter)
  • When you hit the correct flux level (biased to a slight higher value, perhaps 5k) execute the specialtwilight script

On-sky engineering:

Testing Calibration of OWFSX

Purpose: We want to see if all of the calibrations have the right signs and angles for OWFS1 and OWFS2.

  • setup on an 11 mag star on the IHMP probably in the north near center of track
  • move all 4 guide probes to the correct RA and DEC positions from gstar or shuffle.
  • guide with either GC1 or GC2
  • get decent focus and then check and correct any GROC
  • Retract ACAM
  • Open the PFIP shutter syscmd -P -v 'OpenShutter()'
  • null out the X, Y, Focus, Theta, Phi from DWFS8
    • To make X or Y offsets you will need to:
      • open the loop on the guider
      • make your offset with the handpaddle
      • clear the fiducial
      • watch as new fiducials are set to see if it looks good
      • close the loop on the guider
    • To make the Theta and Phi offsets you will need to:
      • open the loop on the TTC
      • make your offset with the handpaddle
      • clear the fiducial
      • watch as new fiducials are set to see if it looks good
      • close the loop on the TTC
    • The X and Y prescribed corrections are between -1 and 1.
    • The Theta and Phi prescribed corrections are between -10 and 10.
    • The Focus prescribed correction is between -0.05 and 0.05
  • make small offsets with the OWFS1 and OWFS2 to get the lenslet somewhat lit, enough to turn on processing.
To move the wfs probes:
syscmd -T -v 'WFS1_offset_probe( dx_ang=1.0, dy_ang=0.0) '
syscmd -T -v 'WFS2_offset_probe( dx_ang=0.0, dy_ang=-0.5) '
The coordinates are in units of arcseconds.
  • make corrections based on the OWFS1 or OWFS2 metrology offsets with TCS hand-paddle not with probe moves
  • report what works and does not work in the RA and TO reports or e-mail to het-operations.

Calibration of OWFS using either CWFS or DWFS8

Purpose: We want to calibrate the OWFS using DWFS8 or CWFS (depending on what stage of the testing we are in, Feedback from Hanshin) on a sidereal trajectory at one of the following Az:

a normal star for Az 180, 234, 292, 335, 0

  • setup on an 11 mag star on the IHMP
  • move all 4 guide probes to the correct RA and DEC positions from gstar or shuffle.
  • save probe positions in the RA log with /home/mcs/astronomer/caldwell/shoprobes
  • If the test is to use DWFS8 then skip this step otherwise offset telescope and probes by the amount to get to CWFS: syscmd -T 'offset_trajectory(dx_ang=-5.5, dy_ang=-1.0, adjust_probes="true")'
  • move the guide probes so that the guide stars are well centered
  • guide with either GC1 or GC2
  • get decent focus and then check and correct any GROC
  • Retract ACAM
  • Open the PFIP shutter syscmd -P -v 'OpenShutter()'
  • null out the X, Y, Focus, Theta, Phi from DWFS8
    • To make X or Y offsets you will need to:
      • open the loop on the guider
      • make your offset with the handpaddle
      • clear the fiducial
      • watch as new fiducials are set to see if it looks good
      • close the loop on the guider
    • To make the Theta and Phi offsets you will need to:
      • open the loop on the TTC
      • make your offset with the handpaddle
      • clear the fiducial
      • watch as new fiducials are set to see if it looks good
      • close the loop on the TTC
    • The X and Y prescribed corrections are between -1 and 1.
    • The Theta and Phi prescribed corrections are between -10 and 10.
    • The Focus prescribed correction is between -0.05 and 0.05
  • make small offsets with the OWFS1 and OWFS2 to get the lenslet centered.
To move the wfs probes:
syscmd -T -v 'WFS1_offset_probe( dx_ang=1.0, dy_ang=0.0) '
syscmd -T -v 'WFS2_offset_probe( dx_ang=0.0, dy_ang=-0.5) '
The coordinates are in units of arcseconds.
  • save probe positions in the RA log with /home/mcs/astronomer/caldwell/shoprobes
  • save at least 15 images (at the same time) with all cameras that are running: GC1, GC2, WFS1, WFS2, DWFS8, TT NOTE: This can be done one jove terminal as startsaving followed by stopsaving
  • wait 10 minutes
  • null out corrections on DWFS8 or CWFS
    • NOTE: if you need to make X and Y offsets you should probably do this with a trajectory offset with probes=true to keep the WFS1 and WFS2 well centered
    • e.g. syscmd -T 'offset_trajectory(dx_ang=0.0, dy_ang=-0.3, adjust_probes="true")'
  • check GROC, make correction is required ( > 500 um correction)
  • null out corrections on DWFS8 or CWFS again if required
    • The X and Y prescribed corrections are between -1 and 1.
    • The Theta and Phi prescribed corrections are between -10 and 10.
    • The Focus prescribed correction is between -0.05 and 0.05
  • save at least 15 images (at the same time) with all cameras that are running: GC1, GC2, WFS1, WFS2, DWFS8, TT
  • repeat the last 5 steps until the end of the track.
  • Close the PFIP shutter syscmd -P -v 'CloseShutter()'

Repeat test: choosing a new star at the next Az in the list: 180, 234, 292, 335, 0.

doing globular clusters with VIRUS

Purpose: We need to fill the IFU with lots of stars. Take a bright GC and move it to four different positions in the IFU array: 084, 085, 094 and 095. NOTE: all of the CCAS free GC are in the 1st half of the night.

Procedure:

  • Select a bright globular cluster near the beginning of track (try to avoid the CCAS tower).
  • Using do_shuffle put the center of the GC in one of the IFUs 084, 085, 094 and 095.
  • What ever method is used to setup on the the cluster, save the IHMP clearly in the RA logs.
  • setup on the target
  • save an ACAM image to document the setup.
  • go through a series of dithers with 180 second exposure at each dither.
  • when done with this setup, setup on the next IFU. Note if required this test could be split over nights.
  • contact Karl that the test is complete.

TOO Science with LRS2-B or R

Purpose: LRS2-B is going away on Monday so any science that could be done should be done. Watch carefully the moon though since we are close to full moon. LRS2-R is available for science after Monday so no urgency unless there is a TOO target.

Procedure:

  • NOTE: LRS2-R is in IFU slot 057 and LRS2-B is in IFU slot 067
  • You can use shuffle with the setup files from shuffle_config_matt
  • Do a blind offset setup for either do_shuffle RA DEC 0 X 067 0 0 test or do_shuffle RA DEC 0 X 057 0 0 test
Last modified 8 years ago Last modified on Oct 15, 2016 11:16:53 PM