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自主可控关键软硬件在我国宇航领域的应用与发展建议 被引量:11

Application and Development Proposal of Autonomous and Controllable Key Electronic Components and Basic Software in Aerospace Field of China
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摘要 针对复杂国际形势与国内薄弱的工业基础,“十一五”以来我国通过“核高基”等国家科技重大专项持续投入,已在核心电子器件、基础软件产品、配套成套工艺等方面取得了重大突破。上海航天技术研究院作为航天装备主要研制单位,积极参与国家科技重大专项的实施,主动推动国产核心器件与操作系统软件的应用验证与型号应用,为国产关键软硬件研制平台能力提升作出了积极贡献。为适应新时代装备自主、安全的发展需求,本文从支持元器件正向研制、提升“研用”转换能力和推动国产操作系统应用3个方面提出重点发展建议。 In view of complex international situation and weak domestic industrial basis,China has continuously invested and improved significantly in the field of key electronic components,basic software,and manufacturing process through major scientific and technological projects.As one of the main development organizations in the aerospace field of China,Shanghai Academy of Spaceflight Technology has actively participated in the major projects,and actively promoted the verification and application of China key electronic components and operating system software in spacecraft,contributing to the capacity promotion of China key software and hardware.In order to adapt to the development requirements of the equipment self-control and safety in the new era,government policy and developing direction suggestions were given in terms of supporting forward design,improving“design to application”transition capacity,and promoting the application of China operating system.
作者 倪光南 朱新忠 NI Guangnan;ZHU Xinzhong(Institute of Computing Technology,Chinese Academy of Sciences,Beijing 100190,China;Shanghai Aerospace Electronic Technology Institute,Shanghai 201109,China)
出处 《上海航天(中英文)》 CSCD 2021年第3期30-34,共5页 Aerospace Shanghai(Chinese&English)
关键词 宇航领域 自主可控 关键软硬件 aerospace field autonomous and controllable key electronic components and basic software
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  • 1王敬贤,江理东,张伟.航天关键元器件国产化分析及工程实施[J].航天标准化,2012(4):6-9. 被引量:15
  • 2Slimane-Kadi M, Brasen D, and Saucier G. A fast-FPGA prototyping system that uses inexpensive high-performance FPIC. Proc. 2nd Annual Workshop on FPGAs, Berkeley, 1994: 147-156.
  • 3Chinnery D and Keutzer K. Closing the Gap Between ASIC and Custom Tools and Techniques for High-Performance ASIC Design. Netherland: Kluwer Academic Publishers, 2002 157-158.
  • 4Altera Corporation. Hardcopy series handbook, http://www. altera.com.cn/literature/hb/hrd/hc_handbook.pdf, 2008, 9.
  • 5Kuon I and Rose J. Measuring the gap between FPGAs and ASICs. IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems, 2007, 26(2): 203-215.
  • 6Hamdy E and McCollum J, et al.. Dielectric based antifuse for logic and memory IC. International Electron Devices Meeting Technical Digest, San Francisco, 1988: 786-789.
  • 7Birkner J and Chan A, et al.. A very-high-speed field-programmable gate array using metalto-metal antifuse programmable elements. Microelectronics Yournal, 1992, 23(7): 561-568.
  • 8Birkner J and Chua H T. Programmable array logic circuit. U.S.Patent, 4124899, 1978.
  • 9Brown S and Rose J. FPGA and CPLD architectures. A tutorial. IEEE Design and Test of Computers, 1996, 12(2): 42-57.
  • 10Frohman-Dentchkowsky D. A fully-decoded 2048-bit electrically programmable MOS ROM. IEEE International Solid State Circuits Conference Digest of Technical Papers, Philadelphia, 1971: 80-81.

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