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High-Repeatable Data Acquisition Systems for Pulsed Power Converters in Particle Accelerator Structures

In this Ph.D. thesis, the issues related to the metrological characterization of high-performance pulsed power converters are addressed. Initially, a background and a state of the art on the measurement systems needed to correctly operate a high-performance power converter are presented. As a matter...

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Autor principal: Baccigalupi, Carlo
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:http://cds.cern.ch/record/2231052
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author Baccigalupi, Carlo
author_facet Baccigalupi, Carlo
author_sort Baccigalupi, Carlo
collection CERN
description In this Ph.D. thesis, the issues related to the metrological characterization of high-performance pulsed power converters are addressed. Initially, a background and a state of the art on the measurement systems needed to correctly operate a high-performance power converter are presented. As a matter of fact, power converters usually exploits digital control loops to enhance their performance. In this context the final performance of a power converter has to be validated by a reference instrument with higher metrological characteristics. In addition, an on-line measurement systemis also needed to digitize the quantity to be controlled with high accuracy. Then, in industrial applications of power converters metrology, specifications are given in terms of Worst-Case Uncertainty (WCU). Therefore, an analytical model for predicting the Worst-Case Uncertainty (WCU) of a measurement system is discussed and detailed for an instrument affected by Gaussian noise. Furthermore, the study and the design of a Reference Acquisition System for characterizing the high-power pulses of the klystronmodulators of the Compact LInear Collider (CLIC), a new linear accelerator under study at CERN, is presented. Finally, the design of an On-line Acquisition Systemfor controlling the CLIC power converter, is presented. The Thesis continues with the numerical results obtained in simulation for the three main topics (Worst-Case Uncertainty, Reference Acquisition System, On-line Acquisition System) to demonstrate the effectiveness of the proposals. Finally, the experimental results of a case study in the framework of the above-mentioned CLIC accelerator are reported and compared with the simulations in order to obtain the final validation of the proposals. In particular, CLIC main requirements for the measurement systems mostly concern their level of repeatability which was proven to be only affected by the instrumental noise under certain assumptions. Thus, the two systems were designed to be ultra-low noise solutions and, in turn, they are demonstrated to be repeatable in the order of few tens of parts per million (ppm).
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institution Organización Europea para la Investigación Nuclear
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publishDate 2016
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spelling cern-22310522019-09-30T06:29:59Zhttp://cds.cern.ch/record/2231052engBaccigalupi, CarloHigh-Repeatable Data Acquisition Systems for Pulsed Power Converters in Particle Accelerator StructuresEngineeringAccelerators and Storage RingsIn this Ph.D. thesis, the issues related to the metrological characterization of high-performance pulsed power converters are addressed. Initially, a background and a state of the art on the measurement systems needed to correctly operate a high-performance power converter are presented. As a matter of fact, power converters usually exploits digital control loops to enhance their performance. In this context the final performance of a power converter has to be validated by a reference instrument with higher metrological characteristics. In addition, an on-line measurement systemis also needed to digitize the quantity to be controlled with high accuracy. Then, in industrial applications of power converters metrology, specifications are given in terms of Worst-Case Uncertainty (WCU). Therefore, an analytical model for predicting the Worst-Case Uncertainty (WCU) of a measurement system is discussed and detailed for an instrument affected by Gaussian noise. Furthermore, the study and the design of a Reference Acquisition System for characterizing the high-power pulses of the klystronmodulators of the Compact LInear Collider (CLIC), a new linear accelerator under study at CERN, is presented. Finally, the design of an On-line Acquisition Systemfor controlling the CLIC power converter, is presented. The Thesis continues with the numerical results obtained in simulation for the three main topics (Worst-Case Uncertainty, Reference Acquisition System, On-line Acquisition System) to demonstrate the effectiveness of the proposals. Finally, the experimental results of a case study in the framework of the above-mentioned CLIC accelerator are reported and compared with the simulations in order to obtain the final validation of the proposals. In particular, CLIC main requirements for the measurement systems mostly concern their level of repeatability which was proven to be only affected by the instrumental noise under certain assumptions. Thus, the two systems were designed to be ultra-low noise solutions and, in turn, they are demonstrated to be repeatable in the order of few tens of parts per million (ppm).CERN-THESIS-2015-369oai:cds.cern.ch:22310522016-11-08T10:45:59Z
spellingShingle Engineering
Accelerators and Storage Rings
Baccigalupi, Carlo
High-Repeatable Data Acquisition Systems for Pulsed Power Converters in Particle Accelerator Structures
title High-Repeatable Data Acquisition Systems for Pulsed Power Converters in Particle Accelerator Structures
title_full High-Repeatable Data Acquisition Systems for Pulsed Power Converters in Particle Accelerator Structures
title_fullStr High-Repeatable Data Acquisition Systems for Pulsed Power Converters in Particle Accelerator Structures
title_full_unstemmed High-Repeatable Data Acquisition Systems for Pulsed Power Converters in Particle Accelerator Structures
title_short High-Repeatable Data Acquisition Systems for Pulsed Power Converters in Particle Accelerator Structures
title_sort high-repeatable data acquisition systems for pulsed power converters in particle accelerator structures
topic Engineering
Accelerators and Storage Rings
url http://cds.cern.ch/record/2231052
work_keys_str_mv AT baccigalupicarlo highrepeatabledataacquisitionsystemsforpulsedpowerconvertersinparticleacceleratorstructures