Prachi Chitnis Raja Ramanna Centre for Advanced Technology Indore, INDIA Jan 22, 2010 1.

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Presentation transcript:

Prachi Chitnis Raja Ramanna Centre for Advanced Technology Indore, INDIA Jan 22,

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Main Control Room Jan 22,

LabVIEW 6.1 based, Windows 2000 Old system Expandability issues Control hardware upgradation of Indus- 1 System enhancements One-to-one control Heterogeneous SCADA Version upgrade cost [3] First experience with EPICS [3] at RRCAT Jan 22,

Microtron Control System Design Jan 22,

10 Mbps Jan 22,

Running assembly program, polls & receive bytes from serial port, resolves commands Standard commands by manufacturer 10 Mbps Linux-x86, EDM z, Base Linux-x86 Base Jan 22,

Microtron field variables Interfaced toDevices Link Type No of I/O points VME station 1.11 Power Supplies – Klystrons, Dipole, Quadrupoles, Correction coils, Cathode & Steering coils 1.Remote/Local status signals 2.ON/OFF status signals 3.Analog status signals(current/voltage/power) 4.ON and OFF control signals 5.Analog control signals (current/voltage) 6.Polarity 2. 6 Safety Interlocks signals 3.10 Temperature signals 4.AC Mains Voltage 5.Vacuum level 6.Cycling control RS ~150 process variables to be administered by EPICS Jan 22,

Field variables Interfaced toDevices Link Type No of I/O points RF Synthesizer 1.RF synthesizer make 2.RF Status (ON/OFF) 3.RF Level 4.RF Carrier Frequency RS-232 / GPIB 4 Digital Storage Oscilloscope 1.RF Forward Power 2.RF Reflected Power 3.Cathode emission signal 4.FCT Signal – bunch current Ethernet4 Digital Teslameter 1.Dipole magnet field RS-2321 Derived 1.Trip alarms of all power supplies 2.Cathode runtime -11 Miscellaneous 1.VME program status 2.VME CPU reset 3.User data 4.DSO settings 5.RF synthesizer settings 6.Fault information ~35 Jan 22,

 Hierarchical design of IOC database  Error checking modules  Event based processing given precedence over periodic processing (scanning (event/passive)/output on change)  While the CPU being reset, readback polling is disabled  Setting records disabled during Local status of Power supplies Jan 22,

Jan 22,

User Authentication Jan 22,

User Authentication Jan 22,

16 The OPI EDM z Jan 22, 2010

17 The OPI EDM z – MEDM – client commands in terminal VME RF Syn DSO DTM Jan 22, 2010

18 OPI Features Coloring guide – MEDM –no white widget Alarm levels Contrast for visibility Disabled on reset, interlock fail, cycling, logout, local mode Two user modes Clipped settings Help feature Jan 22, 2010

19 logging interval, group log, file size, Jan 22, 2010

20 Web browser Jan 22, 2010

 Central database for Indus systems – SQL server based  Using JCA  Java script and JDBC Jan 22,

 Detection of anomalous system behavior  Identification of the cause for the deviant behavior  Expert System Diagnosis – knowledge based on experience and expertise encoded in machine storable structure  Fault tree n rule based reasoning system  Forward chaining algorithm technique  Non-expert operators can troubleshoot a fault Jan 22,

3 categories of fault prone systems in accelerators [2] Hardware components (cavities, magnets etc.) Auxiliary infrastructure (water, air, electrical power etc.) Control system. Availability of control faults at a place Online fault logging system – 2 years data Operational logbooks – 1 year data Two modules Fault prediction Fault diagnosis Jan 22,

 Active - Monitors the anomalies occurring - Warns user ◦ AC mains voltage fluctuations ◦ Dipole magnetic field changing ◦ Vacuum pressure rising ◦ Error checking modules ◦ …  ~ 13 different predictions Jan 22,

 Passive – helps operator to troubleshoot a fault observed – reaches a probable cause  ~ 40 different types of faults  Two parts ◦ System-wise hierarchical fault tree ◦ Rule based reasoning system for each leaf fault ◦ Check panel on EDM  E.g. current setting for a power supply not done Jan 22,

Fault Tree Jan 22,

Rule based reasoning Jan 22,

 Interaction between controllers – Access to PVs  Integration of Indus- 1 controls  Homogeneous system  Accelerator specific tools  Free n open source  Modularity – suits to control hardware upgradation of Indus- 1  Huge EPICS community Jan 22,

 The testing of the project is done in lab environment, field testing is on  Due to its easy adaptability to hardware changes, EPICS is best suited prospective to hardware upgradation.  Mostly involves graphical programming, eases enhancements and changes, and debugging.  The knowledge gained will be utilized for upgrading the Indus-1 control systems. Jan 22,

[1] _source/tarballs/lecroy_tcp-1.00.tar.gz [2] D. Barni et al., “Basis for the reliability analysis of the proton linac for an ADS program”, Proceedings of the PAC ’03 [3] [4] P. Duval et al., “Fault identification in accelerator control”, fault_identification.pdf [5] T. Himel et.al., “Availability and reliability issues for ILC”, Proceedings of PAC’ 07 [6] S. Narasimhan et al., “Automated diagnosis of physical systems”, Proceedings of ICALEPCS07, Knoxville, Tennessee, USA Jan 22,

Jan 22,