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SPS Orbit System - MOPOS. SL Beam Instrumentation C.Boccard, T.Bogey, J.J.Gras, H.Hiller, S.Jackson, R.Jones, A.Manarin, J.P.Papis, J.L.Pasquet, H.Schmickler, J.C.de Vries A.Bland, J.Brazier, P.Charrue, P.Ribeiro, K.Rybalchenko. SPS Orbit System - MOPOS. Requirements
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SPS OrbitSystem - MOPOS SL Beam Instrumentation C.Boccard, T.Bogey, J.J.Gras, H.Hiller, S.Jackson, R.Jones, A.Manarin, J.P.Papis, J.L.Pasquet, H.Schmickler, J.C.de Vries A.Bland, J.Brazier, P.Charrue, P.Ribeiro, K.Rybalchenko
SPS Orbit System - MOPOS • Requirements • Architecture, implementation and tools • Orbit Modules, Presenting User Interface, Configuration • Solutions and Tasks PCR SW Meeting 15-Jan-1999
What Is Required? • Reliable, available and homogenous orbit, first-turn and >1000 turn measurement in the SPS • Multiple function acquisition system • multiple users, different usage, multiple cycle • Automated calibration • Remote diagnostics • Configuration setting archive PCR SW Meeting 15-Jan-1999
Experience in 1998 • Problems related with hybrid system (COPOS+MOPOS) data access and error handling • Severe data validation checks (data reject on low gain and wrong beam time) • First-turn acquisition requires triggering by injection pre-pulse • Calibration procedure available from experts only • Mixture old and new operator control tools for the Orbit system PCR SW Meeting 15-Jan-1999
ORBIT XPOS - WWW Configuration COPOS Calibration COPOS Database XPOS Gateway COPOS Configuration CPS Server ORBI Server XPOS Configuration Server XPOS Database COPOSFront-Ends MOPOS Front-Ends SPS 240 channels ORBIT Related View Obsolete in 1999 PCR SW Meeting 15-Jan-1999
Beam 2k FIFO 2k FIFO 2k FIFO 2k FIFO PLX 9080 PLX 9080 PLX 9080 PLX 9080 Hybrid Xilinx Xilinx Xilinx Xilinx 32 dB Pre-Amplifier Mode Calibrator Gain+Filter Receiver Mode+Gate Sample/Hold Conversion A/D Converter 10 Pick-up/MACI S D 40 Pick-up/Station Digitization System PPC 604 PCI/LOC SYSRAM PMC PCI/VME 256 MB PCI PCI/PCI SQ + IO 8MB/s TG8 TIMD NVRAM PEB/PCI GPIB PCR SW Meeting 15-Jan-1999
timing timing rocsfe nvram control sq acquire timd sq sq sq maci network MOPOS Software System equipsv General machine timing socksv Action Queue sequencer LUT Turn clock Acquisition gates Beam Data DMA shared memory tables 8 MB/s PCR SW Meeting 15-Jan-1999
MOPOS Turn-by Turn Display Horizontal Kick 176 turns = 4 ms 7 ms 176 turns = 4 ms PCR SW Meeting 15-Jan-1999
MOPOS Timing Diagnostics PCR SW Meeting 15-Jan-1999
Benefits of COPOS to MOPOS Transformation for Machine Performance • Contiguous turn measurements and data analysis • Simultaneous first-turn, orbit and multi-turn measurements • Multi-console usage • Integrated configuration tools and database • Hybrid software discarded • Improved diagnostics • Acquisition time PCR SW Meeting 15-Jan-1999
In 1998 In 1999 Transfer Line Steering Real Time Bunch Displays Transfer Line Steering Real Time Bunch Displays Measurement Black-Box Measurement Black-Box XPAS - 98 Data Collector XPAS - 99 Data Collector COPOSFront-Ends Transfer Lines Front-Ends Transfer Lines Front-Ends MOPOS Front-End MOPOS Front-Ends SPS 240 channels 88 channels SPS 240 channels 88 channels Transfer Zones Related View PCR SW Meeting 15-Jan-1999
Specialist View (partially to be used by operations) XPOS Acquisition Timing Diagnostics Turn by Turn Display XPOS Configuration ‘old’ Nodal databases will become obsolete in 1999 COPOS Database TLPOS Database TIPOS Database XPOS Gateway COPOS Configuration TLPOS Configuration TIPOS Configuration XPOS Database XPOS Configuration Server XPAS - 99 Data Collector COPOSFront-Ends MOPOS Front-Ends Transfer Lines Front-Ends PCR SW Meeting 15-Jan-1999
MOPOS Settings Control PCR SW Meeting 15-Jan-1999
MOPOS Super-Cycle Configuration PCR SW Meeting 15-Jan-1999
Tasks for 1998-1999 Shutdown • Hardware Installation and Tuning for 200 BPM’s • Completion of turn-by-turn data transfer (DMA) to provide simultaneous orbit and first-turn acquisitions • Slight modifications to the SPS orbit and TZ programs for full MOPOS system access and control (SL-OP) • Provision of remote diagnostics from any individual MOPOS system as well as for all MOPOS systems in a global view PCR SW Meeting 15-Jan-1999
Tasks During 1999 • Provide an automated calibration tool, replacing the expert procedure used in the 1998 run • Extend the turn-by-turn display to provide calibrated trajectories instead of raw data • Provide a new application tool for exploitation of the turn-by-turn analysis (equivalent to LEP 1000-turn) • Commission the remote timing diagnostics tool • Maintaining two acquisition systems in BA2 and BA6 for phase advance until ported to MOPOS PCR SW Meeting 15-Jan-1999
External Support Needed • Computer network, operational servers and the oracle database during tuning • Machine timing i.e. Machine events, turn clock and injection pre-pulses from SL/CO, SL/RF • Slight transformation of the SPS orbit and transfer zone applications from SL/OP ( for SPS start-up) • Acceptance tests with SL/OP and SL/BI PCR SW Meeting 15-Jan-1999
Time Schedule • Installation MOPOS equipment BA 1-6-5-4-2 • completion 1st March • Tuning BA 3 in progress • New ORBIT software commissioning 1st March • Automated Calibration = March • Configuration = April • Turn-by Turn = May • Diagnostics = May PCR SW Meeting 15-Jan-1999
MOPOS/XPOS in 1999 Transfer Line Steering Real Time Bunch Displays ORBIT XPOS Acquisition Measurement Black-Box XPOS WWW Configuration Timing Diagnostics Turn by Turn Display XPOS WWW Gateways XPOS Configuration Server XPAS - 99 Data Collector XPOS Database Transfer Lines Front-Ends MOPOS Front-Ends 88 channels SPS 240 channels PCR SW Meeting 15-Jan-1999