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Related papers: The Overview of the National Ignition Facility Dis…

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The National Ignition Facility (NIF) currently under construction at the University of California Lawrence Livermore National Laboratory (LLNL) is a 192-beam, 1.8-megajoule, 500-terawatt, 351-nm laser for inertial confinement fusion (ICF)…

Plasma Physics · Physics 2007-05-23 E. I. Moses

The strategy used to develop the NIF Integrated Computer Control System (ICCS) calls for incremental cycles of construction and formal test to deliver a total of 1 million lines of code. Each incremental release takes four to six months to…

Software Engineering · Computer Science 2008-11-26 John P. Woodruff , Drew D. Casavant , Barry D. Cline , Michael R. Gorvad

The National Ignition Facility (NIF) requires that pulses from each of the 192 laser beams be positioned on target with an accuracy of 50 um rms. Beam quality must be sufficient to focus a total of 1.8 MJ of 0.351-um light into a…

Instrumentation and Detectors · Physics 2007-05-23 Lewis Van Atta , Mark Perez , Richard Zacharias , William Rivera

This paper describes the requirements, design, and analysis of the control network for the National Ignition Facility (NIF). The network uses Ethernet technology throughout and ATM is used for efficient digital video transport.

Instrumentation and Detectors · Physics 2007-05-23 R. M. Bryant , R. W. Carey , R. V. Claybourn , G. Pavel , W. J. Schaefer

The National Ignition Facility (NIF) will contain the world's most powerful laser. NIF requires more than 1500 precisely timed trigger pulses to control the timing of laser and diagnostic equipment. The Integrated Timing System applies new…

Instrumentation and Detectors · Physics 2007-05-23 R. A. Lerche , G. W. Coutts , L. J. Lagin , R. A. Nyholm , N. R. Sewall , R. D. Stever , J. D. Wiedwald , J. Larkin , S. Stein , R. Martin

Numerical simulation of the National Ignition Facility (NIF) laser performance and automated control of the laser setup process are crucial to the project's success. These functions will be performed by two closely coupled computer code:…

Optics · Physics 2007-05-23 M. J. Shaw , R. A. Sacks , C. A. Haynam , W. H. Williams

The National Ignition Facility laser focuses 1.8 Mega-joules of ultraviolet light (wavelength 351 nano-meters) from 192 beams into a 600-micro-meter-diameter volume. Effective use of this output in target experiments requires that the power…

Instrumentation and Detectors · Physics 2007-05-23 R. D. Demaret , R. D. Boyd , E. S. Bliss , A. J. Gates , J. R. Severyn

The Integrated Computer Control System (ICCS) is based on a scalable software framework that is distributed over some 325 computers throughout the NIF facility. The framework provides templates and services at multiple levels of abstraction…

Distributed, Parallel, and Cluster Computing · Computer Science 2007-05-23 Robert W. Carey , Kirby W. Fong , Randy J. Sanchez , Joseph D. Tappero , John P. Woodruff

The SNS Project intends to integrate Conventional Facility Controls with its EPICS-based Accelerator and Target Control Systems. EPICS will therefore be used to provide distributed high-level access to all subsystems of the SNS conventional…

Accelerator Physics · Physics 2012-08-27 J. K. Munro, , J. E. Cleaves , E. L. Williams, , D. J. Nypaver , K. -U. Kasemir , R. D. Meyer

The control system of the 1.5 MeV FEL injector is built on the base of ported EPICS. It uses low-cost hardware: personal computers with the processor Intel x86 and CAMAC equipment produced by our institute. At present time, the distributed…

Accelerator Physics · Physics 2011-01-20 T. V. Salikova , A. A. Kondakov , G. Ya. Kurkin , A. D. Oreshkov , M. A. Scheglov , A. G. Tribendis

The NIF Integrated Computer Control System (ICCS) application software uses a set of service frameworks that assures uniform behavior spanning the front-end processors (FEPs) and supervisor programs. This uniformity is visible both in the…

Software Engineering · Computer Science 2007-05-23 Kirby W. Fong , Christopher M. Estes , John M. Fisher , Randy T. Shelton

The Source Development Lab (SDL) at BNL consists of a 230 MeV electron linac and a 10 m long wiggler for short wavelength Free Electronic Laser (FEL) development. The original control system [1] was based on the one in use at the National…

Accelerator Physics · Physics 2007-05-23 S. K. Feng , W. S. Graves , Y. N. Tang

The injection control system of Hefei Light Source (HLS) storage ring is a subsystem of the upgraded HLS control system, which is based upon EPICS. Three programmable logic controllers (PLCs) are used as device controllers, which control…

Accelerator Physics · Physics 2007-05-23 Gongfa Liu , Jingyi Li , Weimin Li , Chuan Li , Kaihong Li , Lei Shang

The Spallation Neutron Source (SNS) is a partnership between six laboratories. To ensure a truly integrated control system, many standards have been agreed upon, including the use of EPICS as the basic toolkit. However, unique within the…

Accelerator Physics · Physics 2007-05-23 S. A. Lewis , C. A. Lionberger , P. T. Cull

Implementation and commissioning of the EPICS based control system for the ISAC radioactive beam facility was completed. The target ion source, mass separator, and low-energy beam-lines started beam production for experiments. In parallel,…

Accelerator Physics · Physics 2007-05-23 R. Keitel , D. Bishop , D. Dale , H. Hui , S. Kadantsev , M. Leross , R. Nussbaumer , J. Richards , E. Tikhomolov , G. Waters

Most of the devices in the SLAC control system are accessed via interface modules in ~450 CAMAC crates. Low-cost controllers in these crates communicate via a SLAC-proprietary bit-serial protocol with 77 satellite control computers…

Instrumentation and Detectors · Physics 2007-05-23 M. J. Browne , A. E. Gromme , E. J. Siskind

The EPICS based control system of the ISAC radioactive beam facility supervises several sub-systems, which are controlled by PLCs. Most of the devices are protected by non-trivial interlocks, which are implemented with ladder-logic…

Accelerator Physics · Physics 2007-05-23 R. Keitel , R. Nussbaumer

We will use EPICS toolkit [1] to build a prototype for upgrading BEPC control system. The purposes are for the following three aspects: (1) Setup a network based distributed control system with EPICS. (2) Study some front-end control…

Accelerator Physics · Physics 2007-05-23 C. H. Wang , X. C. Kong , G. Lei , S. F. Xu , Q. Le , J. Zhao

Cyber-physical systems (CPS) are composed of various embedded subsystems and require specialized software, firmware, and hardware to coordinate with the rest of the system. These multiple levels of integration expose attack surfaces which…

Cryptography and Security · Computer Science 2018-12-11 Smitha Gautham , Georgios Bakirtzis , Matthew T. Leccadito , Robert H. Klenke , Carl R. Elks

Autonomous Industrial Cyber-Physical Systems (ICPS) represent a future vision where industrial systems achieve full autonomy, integrating physical processes seamlessly with communication, computing and control technologies while…

Systems and Control · Electrical Eng. & Systems 2025-04-08 Jiong Jin , Zhibo Pang , Jonathan Kua , Quanyan Zhu , Karl H. Johansson , Nikolaj Marchenko , Dave Cavalcanti
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