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Computation of Eigenmodes in Long and Complex Accelerating Structures by Means of Concatenation Strategies

The computation of eigenmodes for complex accelerating structures is a challenging and important task for the design and operation of particle accelerators. Discretizing long and complex structures to determine its eigenmodes leads to demanding computations typically performed on super computers. Th...

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Autores principales: Fligsen, T, Heller, J, Van Rienen, U
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/1748642
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author Fligsen, T
Heller, J
Van Rienen, U
author_facet Fligsen, T
Heller, J
Van Rienen, U
author_sort Fligsen, T
collection CERN
description The computation of eigenmodes for complex accelerating structures is a challenging and important task for the design and operation of particle accelerators. Discretizing long and complex structures to determine its eigenmodes leads to demanding computations typically performed on super computers. This contribution presents an application example of a method to compute eigenmodes and other parameters derived from these eigenmodes for long and complex structures using standard workstation computers. This is accomplished by the decomposition of the complex structure into several single segments. In a next step, the electromagnetic properties of the segments are described in terms of a compact state-space model. Subsequently, the state-space models of the single structures are concatenated to the full structure. The results of direct calculations are compared with results obtained by the concatenation scheme in terms of computational time and accuracy.
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spelling cern-17486422019-09-30T06:29:59Z http://cds.cern.ch/record/1748642 eng Fligsen, T Heller, J Van Rienen, U Computation of Eigenmodes in Long and Complex Accelerating Structures by Means of Concatenation Strategies Accelerators and Storage Rings 12: Innovative Radio Frequency Technologies (RF) 12.4: SRF HOM Beam Diagnostics The computation of eigenmodes for complex accelerating structures is a challenging and important task for the design and operation of particle accelerators. Discretizing long and complex structures to determine its eigenmodes leads to demanding computations typically performed on super computers. This contribution presents an application example of a method to compute eigenmodes and other parameters derived from these eigenmodes for long and complex structures using standard workstation computers. This is accomplished by the decomposition of the complex structure into several single segments. In a next step, the electromagnetic properties of the segments are described in terms of a compact state-space model. Subsequently, the state-space models of the single structures are concatenated to the full structure. The results of direct calculations are compared with results obtained by the concatenation scheme in terms of computational time and accuracy. info:eu-repo/grantAgreement/EC/FP7/312453 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1748642 2014
spellingShingle Accelerators and Storage Rings
12: Innovative Radio Frequency Technologies (RF)
12.4: SRF HOM Beam Diagnostics
Fligsen, T
Heller, J
Van Rienen, U
Computation of Eigenmodes in Long and Complex Accelerating Structures by Means of Concatenation Strategies
title Computation of Eigenmodes in Long and Complex Accelerating Structures by Means of Concatenation Strategies
title_full Computation of Eigenmodes in Long and Complex Accelerating Structures by Means of Concatenation Strategies
title_fullStr Computation of Eigenmodes in Long and Complex Accelerating Structures by Means of Concatenation Strategies
title_full_unstemmed Computation of Eigenmodes in Long and Complex Accelerating Structures by Means of Concatenation Strategies
title_short Computation of Eigenmodes in Long and Complex Accelerating Structures by Means of Concatenation Strategies
title_sort computation of eigenmodes in long and complex accelerating structures by means of concatenation strategies
topic Accelerators and Storage Rings
12: Innovative Radio Frequency Technologies (RF)
12.4: SRF HOM Beam Diagnostics
url http://cds.cern.ch/record/1748642
http://cds.cern.ch/record/1748642
work_keys_str_mv AT fligsent computationofeigenmodesinlongandcomplexacceleratingstructuresbymeansofconcatenationstrategies
AT hellerj computationofeigenmodesinlongandcomplexacceleratingstructuresbymeansofconcatenationstrategies
AT vanrienenu computationofeigenmodesinlongandcomplexacceleratingstructuresbymeansofconcatenationstrategies