Download presentation
Presentation is loading. Please wait.
Published byStig Simonsen Modified over 6 years ago
1
Startup program, 1 Machine setup (i.e. R:\Controls\matlab\acceleratorcontrol\docs\SRSetupUsingMatlab_ALS.doc) Bergoz BPM/orbit checks: monbpms, correct orbit, PSD, set averaging, aperture scans?, monrates? PS checkout: monmags; check that quad shunt is off; magstep?; monrates? QMS: establish offset orbit and golden orbit (w/ septum bump); include alignment data?; include magnet fiducialization? LOCO: correct betas and coupling, set BPM gains, check corrector gains measure xs orbit interlock calibration & verification & trip speed check Current interlock check; ACM checks Radiation measurements (~1 hour for scrapers) BTS Fix optics Investigate efficiency vs. steering (aperture?) Echotek BPMs Collect calibration data for Till Check kicker bump match w/ echoteks Dynamic aperture/kicker/echotek/scraper calibration Dynamic aperture vs. frf vs. vertical scraper Injection efficiency vs. vertical and horizontal scraper Requires clearing floor? Injection, lifetime with ny = 6.23, 7.23?, nx = nx+1 Injection efficiency w/out IDs (should go up w/ dynamic aperture) BL5 EPU skew gradient correction; skew quad hysteresis? Measure tune shifts with amplitude w/ and w/out IDs Measure frequency map: nx,ny(xb,frf) Lifetime vs. vertical and horizontal scraper (preferably with reasonable vacuum).
2
Startup program, 2 Bergoz High current BPM filter test
Current dependence measurements Test tone calibration High current
3
Hot issues If our dynamic aperture is really 18 mm, why do we only get 75% injection efficiency? Echotek dynamic aperture (14 mm) not= K3 dynamic aperture (18 mm) Injection efficiency vs. vertical aperture Lifetime vs. vertical aperture Injection and lifetime vs. dynamic aperture BL5 EPU skew correction
Similar presentations
© 2024 SlidePlayer.com. Inc.
All rights reserved.