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Design and Performance of the Stanford Linear Collider Control System

Design and Performance of the Stanford Linear Collider Control System PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
The success of the Stanford Linear Collider (SLC) will be dependent upon the implementation of a very large advanced computer-based instrumentation and control system. This paper describes the architectural design of this system as well as a critique of its performance. This critique is based on experience obtained from its use in the control and monitoring of 1/3 of the SLAC linac and in support of an expensive experimental machine physics experimental program. 11 references, 3 figures.

Design and Performance of the Stanford Linear Collider Control System

Design and Performance of the Stanford Linear Collider Control System PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
The success of the Stanford Linear Collider (SLC) will be dependent upon the implementation of a very large advanced computer-based instrumentation and control system. This paper describes the architectural design of this system as well as a critique of its performance. This critique is based on experience obtained from its use in the control and monitoring of 1/3 of the SLAC linac and in support of an expensive experimental machine physics experimental program. 11 references, 3 figures.

Feedback Performance at the Stanford Linear Collider

Feedback Performance at the Stanford Linear Collider PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 3

Book Description
Many feedback loops are used at the Stanford Linear Collider (SLC) to control the orbit and energy of particle beams. Problems with corrector magnet slew rates, actuator calibrations, and computation of the beam transport matrix between loops have resulted in operation of many SLC feedback loops at lower than design gain. The response of various feedback loops to these errors is measured and analyzed in an attempt to improve performance.

SLAC Linear Collider

SLAC Linear Collider PDF Author: Stanford Linear Accelerator Center
Publisher:
ISBN:
Category : Linear accelerators
Languages : en
Pages : 208

Book Description


Stanford Linear Collider History Data Facility

Stanford Linear Collider History Data Facility PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
To effectively maintain the operation of the Stanford Linear Collider the variation over time of control system device parameters and feedback loops must be known. Device status must reflect 'unwanted' variations as well as current states. This paper discusses the software facility which provides the collection and display of history data, and the determination of a behavioral status. The facility's operation, internal design, and user interface are described. 5 figs.

On-line Control Models for the Stanford Linear Collider

On-line Control Models for the Stanford Linear Collider PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Models for computer control of the SLAC three-kilometer linear accelerator and damping rings have been developed as part of the control system for the Stanford Linear Collider. Some of these models have been tested experimentally and implemented in the control program for routine linac operations. This paper will describe the development and implementation of these models, as well as some of the operational results.

Feedback Systems for Linear Colliders

Feedback Systems for Linear Colliders PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 5

Book Description
Feedback systems are essential for stable operation of a linear collider, providing a cost-effective method for relaxing tight tolerances. In the Stanford Linear Collider (SLC), feedback controls beam parameters such as trajectory, energy, and intensity throughout the accelerator. A novel dithering optimization system which adjusts final focus parameters to maximize luminosity contributed to achieving record performance in the 1997-98 run. Performance limitations of the steering feedback have been investigated, and improvements have been made. For the Next Linear Collider (NLC), extensive feedback systems are planned as an integral part of the design. Feedback requirements for JLC (the Japanese Linear Collider) are essentially identical to NLC; some of the TESLA requirements are similar but there are significant differences. For NLC, algorithms which incorporate improvements upon the SLC implementation are being prototyped. Specialized systems for the damping rings, rf and interaction point will operate at high bandwidth and fast response. To correct for the motion of individual bunches within a train, both feedforward and feedback systems are planned. SLC experience has shown that feedback systems are an invaluable operational tool for decoupling systems, allowing precision tuning, and providing pulse-to-pulse diagnostics. Feedback systems for the NLC will incorporate the key SLC features and the benefits of advancing technologies.

A Conceptual Design of Final Focus Systems for Linear Colliders

A Conceptual Design of Final Focus Systems for Linear Colliders PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
Linear colliders are a relatively recent development in the evolution of particle accelerators. This report discusses some of the approaches that have been considered for the design of Final Focus Systems to demagnify the beam exiting from a linac to the small size suitable for collisions at the interaction point. The system receiving the most attention is the one adopted for the SLAC Linear Collider. However, the theory and optical techniques discussed should be applicable to the design efforts for future machines.

SLAC Linear Collider Conceptual Design Report

SLAC Linear Collider Conceptual Design Report PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
The linear collider system is described in detail, including the transport system, the collider lattice, final focusing system, positron production, beam damping and compression, high current electron source, instrumentation and control, and the beam luminosity. The experimental facilities and the experimental uses are discussed along with the construction schedule and estimated costs. Appendices include a discussion of space charge effects in the linear accelerator, emittance growth in the collider, the final focus system, beam-beam instabilities and pinch effects, and detector backgrounds. (GHT).

Phase and Amplitude Detection System for the Stanford Linear Accelerator

Phase and Amplitude Detection System for the Stanford Linear Accelerator PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

Book Description
A computer controlled phase and amplitude detection system to measure and stabilize the rf power sources in the Stanford Linear Accelerator is described. This system measures the instantaneous phase and amplitude of a 1 microsecond 2856 MHz rf pulse and will be used for phase feedback control and for amplitude and phase jitter detection. This paper discusses the measurement system performance requirements for the operation of the Stanford Linear Collider, and the design and implementation of the phase and amplitude detection system. The fundamental software algorithms used in the measurement are described, as is the performance of the prototype phase and amplitude detector system.

Energy Research Abstracts

Energy Research Abstracts PDF Author:
Publisher:
ISBN:
Category : Power resources
Languages : en
Pages : 872

Book Description