| FPGA-based networking systems for high data-rate and reliable in-vehicle communications |
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Design, Automation, and Test in Europe
archive
Proceedings of the conference on Design, automation and test in Europe
table of contents
Nice, France
SESSION: Automotive
table of contents
Pages: 480 - 485
Year of Publication: 2007
ISBN:978-3-9810801-2-4
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Authors
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Sergio Saponara
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University of Pisa, Pisa, Italy
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Esa Petri
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C.so Italia, Pisa, Italy
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Marco Tonarelli
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C.so Italia, Pisa, Italy
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Iacopo Del Corona
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University of Pisa, Pisa, Italy
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Luca Fanucci
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University of Pisa, Pisa, Italy
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EDA Consortium
San Jose, CA, USA
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| Bibliometrics |
Downloads (6 Weeks): 11, Downloads (12 Months): 64, Citation Count: 1
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ABSTRACT
The amount of electronic systems introduced in vehicles is continuously increasing: X-by-wire, complex electronic control systems and above all future applications such as automotive vision and safety warnings require in-car reliable communication backbones with the capability to handle large amount of data at high speeds. To cope with this issue and driven by the experience of aerospace systems, the Space Wire standard, recently proposed by the European Space Agency (ESA), can be introduced in the automotive field. The SpaceWire is a serial data link standard which provides safety and redundancy and guarantees to handle data-rates up to hundreds of Mbps. This paper presents the design of configurable SpaceWire router and interface hardware macrocells, the first in state of the art compliant with the newest standard extensions, Protocol Identification (PID) and Remote Memory Access Protocol (RMAP). The macrocells have been integrated and tested on antifuse technology in the framework of an ESA project. The achieved performances of a router with 8 links, 130 Mbps data-rate, 1.5 W power cost, meet the requirements of future automotive electronic systems. The proposed networking solution simplifies the connectivity, reducing also the relevant volume and mass budgets, provides network safety and redundancy and guarantees to handle very high bandwidth data flows not covered by current standards as CAN or FlexRay.
REFERENCES
Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.
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N. Navet et al., "Trends in automotive communication systems", Proc. of the IEEE, Vol. 93, n. 6, June 2005, pp. 1204--1223
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2
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T. Nolte et al., "Automotive communications: past, current and future", IEEE ETFA, vol. 1, Sept. 2005, pp. 985--992
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3
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4
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S. Muramatsu et al., "Image processing device for automotive vision systems", IEEE Intelligent Vehicle Symp. 2002, vol.1, pp. 121--126
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5
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Nan-Ning Zheng , Shuming Tang , Hong Cheng , Qing Li , Guanpi Lai , Fei-Yue Wang, Toward Intelligent Driver-Assistance and Safety Warning Systems, IEEE Intelligent Systems, v.19 n.2, p.8-11, March 2004
[doi> 10.1109/MIS.2004.1274904]
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6
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ECSS-E-50-12A "Space engineering, SpaceWire - Links, nodes, routers and networks", 24 Jan. 2003
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7
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ECSS-E-50-12 Part 2 Draft E, 21 Dec. 2005
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ECSS-E-50-12 Part 2 Draft B, January 2005
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9
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S. Parkes et al., "SpaceWire: a spacecraft onboard network for realtime communications", IEEE-NPSS Real time conf., June 2005 pp. 6--10
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10
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G. Rakow et al., "Reliable transport over SpaceWire for James Webb space telescope", IEEE Aerospace Conf. 2003, vol. 5, pp. 2289--2302
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11
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Day-Young Kim et al. "Design of a new on-board computer for the new KOMPSAT bus", IEEE Aerospace Conf. 2005, vol. 1, pp. 1--12
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12
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J. Marshall et al., "Reconfigurable processing systems in spaceborne applications", Proc. IEEE Aerospace Conf. 2004, vol. 4, pp. 2354--2363
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13
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S. Yesil et al., "GOLGE: a case study of a secure data communication system for micro-satellites", IEEE RAST 2005, pp. 438--441
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14
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15
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M. Mason et al., "FPGA reliability in space-flight and automotive applications", FPGA and programmable logic Journal, 2005
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16
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J. T. Giasch, S. Parkes, A. Christem, "From IEEE 1355 high-speed serial links to SpaceWire", DASIA'99, pp. 1--6
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18
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Spw12, SpaceWire IP core hardware manual, Astrium, 2003
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19
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www.star-dundee.com
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