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 * ''' X arm FP axis is established and PR3 P/Y is fixed.'''
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 * ''' X arm FP axis is established and PR3 P/Y is fixed.'''
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  * Go to [[http://172.16.32.60/kagra_mannual/img/commissioning_doc.png|Commissioning.Doc]].
  * Select "SEMI AUTO ALIGNMENT" in Commissioning.Doc.
  * Push “! record TMS QPD" in [[http://172.16.32.60/kagra_mannual/img/salignment.png|SEMI AUTO ALIGNMENT]].
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  * Go to [[http://172.16.32.60/kagra_mannual/img/guardian_overview.png|Guardian Overview]].
  * Select "XARM" in Guardian Overview.
  * Select "request [All]" in [[http://172.16.32.60/kagra_mannual/img/GRD-XARM_MAIN.png|XARM]].
  * Select "IR_LOCKED" in [[http://172.16.32.60/kagra_mannual/img/GRD-XARM_STATES.png|XARM]].
  * You can see [[http://172.16.32.60/kagra_mannual/img/AOS-TMSX_GR_PDA1_OUTPUT.png|K1:AOS-TMSX_GR_PDA1_OUTPUT]] enhancement.

How to realize X arm GR/IR alignment(from IMMT2(SR3) to ETMXY)

  1. Enter Alignment Mode1

  2. Enter Alignment Mode2

  3. X arm GR alignment (ITMY misalign).

  4. X arm GR alignment (Resonate GR).

  5. X arm GR alignment (Check spot position).

  6. X arm GR alignment (PR3 Dithering).

    • Go to Guardian Overview.

    • Select "XARM" in Guardian Overview.
    • Select "request [All]" in XARM.

    • Select "MANUAL", then "ENGAGE_PR3_ADS" in All.

  7. X arm GR alignment (find good FP axis & PR3 P/Y).

    • Go to Commissioning.Doc.

    • Select "ALL VIS" in Commissioning.Doc.
    • Select "CRY-P" for both ITMX and ETMX in ALL VIS.

    • Select "OL SETPOINT" for ITMX and ETMX in CRY-P.

    • You can find for both ITMX and ETMX. Right click on slide bar and select “-1” as an increment. Never select large increment.

    • Adjust (IE)TMX alignment to lead their spots on both (IE)TMX to be around center. Ideally, K1:AOS-TMSX_GR_PDA1_OUTPUT should be maximized.
    • Or, Maximize K1:AOS-TMSX_GR_PDA1_OUTPUT by adjusting, firstly Yaw of IETMX and secondly Pitch.
      1. Remember the value of K1:AOS-TMSX_GR_PDA1_OUTPUT (assuming VtmsxGR-0).

      2. Anyway, move Yaw/ETMX in one direction until you observe slight reduction of VtmsxGR-0.
      3. Move Yaw/ITMX in both direction to find max of VtmsxGR.
      4. (4-1) If you can find better VtmsxGR than Vtmsxgr-0, it means your selection for ETMX actuation is good direction.
        • (4-2) If worse, bad direction.
      5. If good, repeat (2) (3) until you encounter (4-2). If bad, select opposite actuation then repeat (2)(3) until you encounter (4-2) again.
      6. If you find max point, perform (1)~(5) for Pitch/(IE)TMX. (1)~(6) is regarded as one “set” optimization.Ideally, it is better to perform 2 sets for each Yaw/Pitch.
  8. X arm FP axis is established and PR3 P/Y is fixed.

  9. X arm GR alignment (Record good TMSX).

  10. X arm IR alignment (Resonate IR).

  11. X arm IR alignment (PR2-IMMT2 alignment).

  12. X arm IR alignment (GR/IR resonance check).

  13. X arm GR/IR alignment Established.

  14. Y arm IR alignment Preparation.

  15. Y arm IR alignment (Resonate IR).

  16. Y arm IR alignment (Check spot position on ETMY).

  17. Y arm IR align (Adjust BS for ETMY spot centering).

  18. Y arm IR alignment (ITMY,ETMY alignment).

  19. Y arm IR alignment (Check spot on ITMY).

  20. Y arm IR alignment Established.

  21. Y arm IR alignment (Record good TMSY).

  22. Y arm IR alignment Established.

  23. Y arm GR alignment (Resonate GR).

  24. Y arm GR alignment (TMSY GR maximize with SR3).

  25. Y arm GR/IR alignment Established.

  26. FPMI Recovery (Exit from alignment mode).

  27. FPMI Recovery (Align ITMX).

  28. FPMI Recovery (Start FPMI).

KAGRA/Subgroups/FCL (last edited 2023-12-28 08:01:30 by miyoki)