ITER fast plant system controller prototype based on ATCA platform
The ITER fast plan system controllers (FPSC) are based on embedded technologies. The FPSCs [1] will be devoted to data acquisition tasks (sampling rates>1kSPS) and control purposes in closed-control loops whose cycle times are below 1ms. Fast controllers will be dedicated industrial controllers w...
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Published in: | Fusion engineering and design Vol. 87; no. 12; pp. 2024 - 2029 |
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Main Authors: | , , , , , , , , , , , , , , , , , |
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Elsevier B.V
01-12-2012
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Abstract | The ITER fast plan system controllers (FPSC) are based on embedded technologies. The FPSCs [1] will be devoted to data acquisition tasks (sampling rates>1kSPS) and control purposes in closed-control loops whose cycle times are below 1ms. Fast controllers will be dedicated industrial controllers with the ability to supervise other fast and/or slow controllers and interface to actuators, sensors and high performance networks. This contribution presents an FPSC prototype, specialized for data acquisition, based on the ATCA (Advanced Telecommunications Computing Architecture) standard. This prototyping activity contributes to the ITER Plant Control Design Handbook (PCDH) effort of standardization, specifically regarding fast controller characteristics.
For the prototype, IPFN has developed a new family of ATCA modules targeting ITER requirements. This family of modules comprises an AMC (Advanced Mezzanine Card) carrier/data hub/timing hub, compliant with the upcoming ATCA extensions for Physics, and a multi-channel galvanically isolated PnP digitizer, designed for serviceability. The design and test of a peer-to-peer communications layer for the implementation of a reflective memory over PCI Express and the design and test of an IEEE-1588 transport layer over an high performance serial link were also performed. In this contribution, a complete description of the solution is presented as well as the integration of the controller into the standard CODAC environment. The most relevant test results will be addressed, focusing in the benefits and limitations of the applied technologies. |
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AbstractList | The ITER fast plan system controllers (FPSC) are based on embedded technologies. The FPSCs [1] will be devoted to data acquisition tasks (sampling rates >1 kSPS) and control purposes in closed-control loops whose cycle times are below 1 ms. Fast controllers will be dedicated industrial controllers with the ability to supervise other fast and/or slow controllers and interface to actuators, sensors and high performance networks. This contribution presents an FPSC prototype, specialized for data acquisition, based on the ATCA (Advanced Telecommunications Computing Architecture) standard. This prototyping activity contributes to the ITER Plant Control Design Handbook (PCDH) effort of standardization, specifically regarding fast controller characteristics. For the prototype, IPFN has developed a new family of ATCA modules targeting ITER requirements. This family of modules comprises an AMC (Advanced Mezzanine Card) carrier/data hub/timing hub, compliant with the upcoming ATCA extensions for Physics, and a multi-channel galvanically isolated PnP digitizer, designed for serviceability. The design and test of a peer-to-peer communications layer for the implementation of a reflective memory over PCI Express and the design and test of an IEEE-1588 transport layer over an high performance serial link were also performed. In this contribution, a complete description of the solution is presented as well as the integration of the controller into the standard CODAC environment. The most relevant test results will be addressed, focusing in the benefits and limitations of the applied technologies. The ITER fast plan system controllers (FPSC) are based on embedded technologies. The FPSCs [1] will be devoted to data acquisition tasks (sampling rates>1kSPS) and control purposes in closed-control loops whose cycle times are below 1ms. Fast controllers will be dedicated industrial controllers with the ability to supervise other fast and/or slow controllers and interface to actuators, sensors and high performance networks. This contribution presents an FPSC prototype, specialized for data acquisition, based on the ATCA (Advanced Telecommunications Computing Architecture) standard. This prototyping activity contributes to the ITER Plant Control Design Handbook (PCDH) effort of standardization, specifically regarding fast controller characteristics. For the prototype, IPFN has developed a new family of ATCA modules targeting ITER requirements. This family of modules comprises an AMC (Advanced Mezzanine Card) carrier/data hub/timing hub, compliant with the upcoming ATCA extensions for Physics, and a multi-channel galvanically isolated PnP digitizer, designed for serviceability. The design and test of a peer-to-peer communications layer for the implementation of a reflective memory over PCI Express and the design and test of an IEEE-1588 transport layer over an high performance serial link were also performed. In this contribution, a complete description of the solution is presented as well as the integration of the controller into the standard CODAC environment. The most relevant test results will be addressed, focusing in the benefits and limitations of the applied technologies. |
Author | Neto, A. López, J.M. Duarte, A. Vega, J. Sousa, J. Gonçalves, B. Carvalho, B.B. Rodrigues, A.P. Utzel, N. Batista, .A. Castro, R. Alves, D. Correia, M. Carvalho, P.F. Ruiz, M. Makijarvi, P. Santos, B. Valcárcel, D. |
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CitedBy_id | crossref_primary_10_1016_j_fusengdes_2013_08_002 crossref_primary_10_1016_j_fusengdes_2017_05_076 crossref_primary_10_1016_j_fusengdes_2015_05_037 crossref_primary_10_1016_j_fusengdes_2015_05_067 crossref_primary_10_1016_j_fusengdes_2013_01_076 crossref_primary_10_1016_j_fusengdes_2013_02_060 crossref_primary_10_1016_j_fusengdes_2024_114370 crossref_primary_10_1016_j_fusengdes_2013_12_025 crossref_primary_10_1016_j_fusengdes_2017_03_106 crossref_primary_10_1016_j_fusengdes_2018_01_069 crossref_primary_10_1088_1748_0221_12_07_P07016 crossref_primary_10_1016_j_fusengdes_2013_04_013 crossref_primary_10_1016_j_fusengdes_2014_02_068 crossref_primary_10_1016_j_fusengdes_2017_03_174 crossref_primary_10_1016_j_fusengdes_2021_112529 crossref_primary_10_1016_j_fusengdes_2018_01_064 crossref_primary_10_1016_j_fusengdes_2012_11_013 crossref_primary_10_1016_j_fusengdes_2015_06_016 crossref_primary_10_1109_TNS_2016_2531421 crossref_primary_10_1587_elex_16_20190373 |
Cites_doi | 10.1016/j.fusengdes.2010.12.014 10.1109/TNS.2010.2049501 10.1109/TNS.2009.2037815 10.1063/1.2221906 |
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References | asynDriver: Asynchronous Driver Support Batista (bib0030) 2006; 77 bib0025 B. Gonçalves, et al. Engineering design of ITER prototype fast plant system controller, IEEE Transactions on Nuclear Science, in press. Wallander, Abadie, Dave, Di Maio (bib0005) 2010; 85 Valcarcel (bib0040) 2010 Neto (bib0035) 2010; 57 Journeaux (bib0010) 2011 Gonçalves (bib0020) 2010; 57 . Wallander (10.1016/j.fusengdes.2012.04.005_bib0005) 2010; 85 Journeaux (10.1016/j.fusengdes.2012.04.005_bib0010) 2011 Valcarcel (10.1016/j.fusengdes.2012.04.005_bib0040) 2010 10.1016/j.fusengdes.2012.04.005_bib0015 Neto (10.1016/j.fusengdes.2012.04.005_bib0035) 2010; 57 Gonçalves (10.1016/j.fusengdes.2012.04.005_bib0020) 2010; 57 10.1016/j.fusengdes.2012.04.005_bib0045 Batista (10.1016/j.fusengdes.2012.04.005_bib0030) 2006; 77 |
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Snippet | The ITER fast plan system controllers (FPSC) are based on embedded technologies. The FPSCs [1] will be devoted to data acquisition tasks (sampling rates>1kSPS)... The ITER fast plan system controllers (FPSC) are based on embedded technologies. The FPSCs [1] will be devoted to data acquisition tasks (sampling rates >1... |
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Title | ITER fast plant system controller prototype based on ATCA platform |
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