Cargando…

NEBULAS: a high performance data-driven event-building architecture based on an asynchronous self-routing packet-switching network

We propose a new approach to event building in future high rate experiments such as those at the LHC. We use a real-time, hierarchical event filtering paradigm based on pipelined triggering and data buffering at level 1, followed by farms of several hundreds of independent processors operating at le...

Descripción completa

Detalles Bibliográficos
Autores principales: Christiansen, J, Klingsheim, O, Letheren, M F, Marchioro, A, Tenhunen, H, Nummela, A, Nurmi, J, Gomes, P, Mandjavidze, I D
Lenguaje:eng
Publicado: 1992
Materias:
Acceso en línea:http://cds.cern.ch/record/291710
_version_ 1780888681504047104
author Christiansen, J
Klingsheim, O
Letheren, M F
Marchioro, A
Tenhunen, H
Nummela, A
Nurmi, J
Gomes, P
Mandjavidze, I D
author_facet Christiansen, J
Klingsheim, O
Letheren, M F
Marchioro, A
Tenhunen, H
Nummela, A
Nurmi, J
Gomes, P
Mandjavidze, I D
author_sort Christiansen, J
collection CERN
description We propose a new approach to event building in future high rate experiments such as those at the LHC. We use a real-time, hierarchical event filtering paradigm based on pipelined triggering and data buffering at level 1, followed by farms of several hundreds of independent processors operating at level 2 and level 3. In view of the uncertainty in the rates and event sizes expected after the first level trigger in LHC experiments, it is important that data acquisition architectures can be open- endedly scaled to handle higher global bandwidths and accommodate more processors. We propose to apply the principle of self-routing packet-switching networks (currently under industrial development for telecommunications and multi-processor applications) to event building. We plan to implement a conceptually simple, distributed, asynchronous, data-driven, scalable, bottleneck-free architecture. An important feature of the architecture is that it can satisfy the data acquisition system's performance requirements using only a low-power, medium speed, inexpensive CMOS technology. Our development addresses related systems design issues, such as buffer management, destination control strategies, event and trigger resynchronization, base-line cancellation, and the use of asynchronous data pipelines.
id cern-291710
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1992
record_format invenio
spelling cern-2917102019-09-30T06:29:59Zhttp://cds.cern.ch/record/291710engChristiansen, JKlingsheim, OLetheren, M FMarchioro, ATenhunen, HNummela, ANurmi, JGomes, PMandjavidze, I DNEBULAS: a high performance data-driven event-building architecture based on an asynchronous self-routing packet-switching networkDetectors and Experimental TechniquesWe propose a new approach to event building in future high rate experiments such as those at the LHC. We use a real-time, hierarchical event filtering paradigm based on pipelined triggering and data buffering at level 1, followed by farms of several hundreds of independent processors operating at level 2 and level 3. In view of the uncertainty in the rates and event sizes expected after the first level trigger in LHC experiments, it is important that data acquisition architectures can be open- endedly scaled to handle higher global bandwidths and accommodate more processors. We propose to apply the principle of self-routing packet-switching networks (currently under industrial development for telecommunications and multi-processor applications) to event building. We plan to implement a conceptually simple, distributed, asynchronous, data-driven, scalable, bottleneck-free architecture. An important feature of the architecture is that it can satisfy the data acquisition system's performance requirements using only a low-power, medium speed, inexpensive CMOS technology. Our development addresses related systems design issues, such as buffer management, destination control strategies, event and trigger resynchronization, base-line cancellation, and the use of asynchronous data pipelines.CERN-DRDC-92-14DRDC-P-36oai:cds.cern.ch:2917101992
spellingShingle Detectors and Experimental Techniques
Christiansen, J
Klingsheim, O
Letheren, M F
Marchioro, A
Tenhunen, H
Nummela, A
Nurmi, J
Gomes, P
Mandjavidze, I D
NEBULAS: a high performance data-driven event-building architecture based on an asynchronous self-routing packet-switching network
title NEBULAS: a high performance data-driven event-building architecture based on an asynchronous self-routing packet-switching network
title_full NEBULAS: a high performance data-driven event-building architecture based on an asynchronous self-routing packet-switching network
title_fullStr NEBULAS: a high performance data-driven event-building architecture based on an asynchronous self-routing packet-switching network
title_full_unstemmed NEBULAS: a high performance data-driven event-building architecture based on an asynchronous self-routing packet-switching network
title_short NEBULAS: a high performance data-driven event-building architecture based on an asynchronous self-routing packet-switching network
title_sort nebulas: a high performance data-driven event-building architecture based on an asynchronous self-routing packet-switching network
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/291710
work_keys_str_mv AT christiansenj nebulasahighperformancedatadriveneventbuildingarchitecturebasedonanasynchronousselfroutingpacketswitchingnetwork
AT klingsheimo nebulasahighperformancedatadriveneventbuildingarchitecturebasedonanasynchronousselfroutingpacketswitchingnetwork
AT letherenmf nebulasahighperformancedatadriveneventbuildingarchitecturebasedonanasynchronousselfroutingpacketswitchingnetwork
AT marchioroa nebulasahighperformancedatadriveneventbuildingarchitecturebasedonanasynchronousselfroutingpacketswitchingnetwork
AT tenhunenh nebulasahighperformancedatadriveneventbuildingarchitecturebasedonanasynchronousselfroutingpacketswitchingnetwork
AT nummelaa nebulasahighperformancedatadriveneventbuildingarchitecturebasedonanasynchronousselfroutingpacketswitchingnetwork
AT nurmij nebulasahighperformancedatadriveneventbuildingarchitecturebasedonanasynchronousselfroutingpacketswitchingnetwork
AT gomesp nebulasahighperformancedatadriveneventbuildingarchitecturebasedonanasynchronousselfroutingpacketswitchingnetwork
AT mandjavidzeid nebulasahighperformancedatadriveneventbuildingarchitecturebasedonanasynchronousselfroutingpacketswitchingnetwork