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Robust System Design
https://ipsj.ixsq.nii.ac.jp/records/72876
https://ipsj.ixsq.nii.ac.jp/records/728768eb91d82-791c-473e-b731-983eca321909
名前 / ファイル | ライセンス | アクション |
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Copyright (c) 2011 by the Information Processing Society of Japan
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オープンアクセス |
Item type | Trans(1) | |||||||
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公開日 | 2011-02-08 | |||||||
タイトル | ||||||||
タイトル | Robust System Design | |||||||
タイトル | ||||||||
言語 | en | |||||||
タイトル | Robust System Design | |||||||
言語 | ||||||||
言語 | eng | |||||||
キーワード | ||||||||
主題Scheme | Other | |||||||
主題 | Reliable Circuit Design | |||||||
資源タイプ | ||||||||
資源タイプ識別子 | http://purl.org/coar/resource_type/c_6501 | |||||||
資源タイプ | journal article | |||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属 | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者所属(英) | ||||||||
en | ||||||||
Robust Systems Group, Department of Electrical Engineering and Department of Computer Science, Stanford University | ||||||||
著者名 |
Subhasish, Mitra
× Subhasish, Mitra
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著者名(英) |
Subhasish, Mitra
× Subhasish, Mitra
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論文抄録 | ||||||||
内容記述タイプ | Other | |||||||
内容記述 | Robust system design is essential to ensure that future electronic systems perform correctly despite rising complexity and increasing disturbances. In contrast, today's mainstream systems typically assume that transistors and interconnects operate correctly over their useful lifetime. Future systems cannot rely on such assumptions for several reasons: 1. With enormous complexity, future systems are significantly vulnerable to design flaws. 2. For coming generations of silicon technologies, several causes of hardware failures, largely benign in the past, are becoming significant at the system-level. 3. Emerging nanotechnologies, such as carbon nanotubes, are inherently highly subject to imperfections. At the same time, there is explosive growth in our dependency on electronic systems. This paper addresses the following major robust system design goals: 1. New approaches to thorough validation that can cope with tremendous growth in complexity. 2. Cost-effective tolerance and prediction of failures in hardware during system operation. 3. Practical ways to overcome substantial inherent imperfections in emerging nanotechnologies. Significant recent progress in robust system design impacts almost every aspect of future systems, from ultra-large-scale computing and storage systems, all the way to their nanoscale components. | |||||||
論文抄録(英) | ||||||||
内容記述タイプ | Other | |||||||
内容記述 | Robust system design is essential to ensure that future electronic systems perform correctly despite rising complexity and increasing disturbances. In contrast, today's mainstream systems typically assume that transistors and interconnects operate correctly over their useful lifetime. Future systems cannot rely on such assumptions for several reasons: 1. With enormous complexity, future systems are significantly vulnerable to design flaws. 2. For coming generations of silicon technologies, several causes of hardware failures, largely benign in the past, are becoming significant at the system-level. 3. Emerging nanotechnologies, such as carbon nanotubes, are inherently highly subject to imperfections. At the same time, there is explosive growth in our dependency on electronic systems. This paper addresses the following major robust system design goals: 1. New approaches to thorough validation that can cope with tremendous growth in complexity. 2. Cost-effective tolerance and prediction of failures in hardware during system operation. 3. Practical ways to overcome substantial inherent imperfections in emerging nanotechnologies. Significant recent progress in robust system design impacts almost every aspect of future systems, from ultra-large-scale computing and storage systems, all the way to their nanoscale components. | |||||||
書誌レコードID | ||||||||
収録物識別子タイプ | NCID | |||||||
収録物識別子 | AA12394951 | |||||||
書誌情報 |
IPSJ Transactions on System LSI Design Methodology(TSLDM) 巻 4, p. 2-30, 発行日 2011-02-08 |
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ISSN | ||||||||
収録物識別子タイプ | ISSN | |||||||
収録物識別子 | 1882-6687 | |||||||
出版者 | ||||||||
言語 | ja | |||||||
出版者 | 情報処理学会 |