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ICMIA 2013 桂林會議的論文全部檢索啦。恭喜! 已有7人參與
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| ICMIA 2013 桂林會議的論文全部檢索啦,恭喜,不錯(cuò)的會議。 |
木蟲 (正式寫手)
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Accession number: 20133516681707 Title: 32-bit datapath AES IP core based on FPGA Authors: Tang, Hong Wei1 Author affiliation: 1 Shaoyang University, Shaoyang, China Corresponding author: Tang, H. (thwei2008@126.com) Source title: Applied Mechanics and Materials Abbreviated source title: Appl. Mech. Mater. Volume: 336-338 Monograph title: Industrial Instrumentation and Control Systems II Issue date: 2013 Publication year: 2013 Pages: 1848-1851 Language: English ISSN: 16609336 E-ISSN: 16627482 ISBN-13: 9783037857519 Document type: Conference article (CA) Conference name: 2013 2nd International Conference on Measurement, Instrumentation and Automation, ICMIA 2013 Conference date: April 23, 2013 - April 24, 2013 Conference location: Guilin, China Conference code: 99007 Sponsor: Korea Maritime University; Hong Kong Industrial Technology Research Centre; Inha University Publisher: Trans Tech Publications Ltd, Kreuzstrasse 10, Zurich-Durnten, CH-8635, Switzerland Abstract: This paper presents an architecture for 32-bit datapath Advanced Encryption Standard(AES) IP core based on FPGA. It uses finite state machine, and supports encryption, decryption and key expansion. The round-key is calculated before the beginning of encryption and decryption. It consumes less hardware resources. It is implemented on Cyclone II FPGA EP2C35F672C6, which consumes less than 55% logic elements of the resources. The IP core can operate at a maximum clock frequency of 100 MHz. Compared with 128-bit datapath AES, it can interface with CPU easily. © (2013) Trans Tech Publications, Switzerland. Number of references: 4 Main heading: Cryptography Controlled terms: Data privacy - Field programmable gate arrays (FPGA) - Storms Uncontrolled terms: Advanced Encryption Standard - CAN interface - Clock frequency - Encryption and decryption - Hardware resources - IP core - Key expansion - Logic elements Classification code: 443.3 Precipitation - 716 Telecommunication; Radar, Radio and Television - 717 Optical Communication - 718 Telephone Systems and Related Technologies; Line Communications - 721.3 Computer Circuits - 723 Computer Software, Data Handling and Applications DOI: 10.4028/www.scientific.net/AMM.336-338.1848 Database: Compendex Compilation and indexing terms, © 2013 Elsevier Inc. |
至尊木蟲 (著名寫手)
木蟲 (正式寫手)
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Accession number: 20133516681709 Title: A new best-fit method for distorted reflector antenna surface Authors: Chang, Wen Wen1 ; Yusup, Ai Li1, 2 ; Xiang, Bin Bin1 Author affiliation: 1 Xingjiang Astronomical Observation, Chinese Academy of Science, China 2 Key Laboratory of Radio Astronomy, Chinese Academy of Sciences, China Source title: Applied Mechanics and Materials Abbreviated source title: Appl. Mech. Mater. Volume: 336-338 Monograph title: Industrial Instrumentation and Control Systems II Issue date: 2013 Publication year: 2013 Pages: 1857-1862 Language: English ISSN: 16609336 E-ISSN: 16627482 ISBN-13: 9783037857519 Document type: Conference article (CA) Conference name: 2013 2nd International Conference on Measurement, Instrumentation and Automation, ICMIA 2013 Conference date: April 23, 2013 - April 24, 2013 Conference location: Guilin, China Conference code: 99007 Sponsor: Korea Maritime University; Hong Kong Industrial Technology Research Centre; Inha University Publisher: Trans Tech Publications Ltd, Kreuzstrasse 10, Zurich-Durnten, CH-8635, Switzerland Abstract: Actual reflector antenna always has a deformation which has a serious influence on antenna performance. Establishing the equation of the distorted reflector surface is important for calculating antenna performance and precise control. A new best-fitting method based on least square method is submitted in this paper. This method depart from the ideal parabolic equation, and use the distance between the deformation point and the correspondent fitting point to establish the least square error condition equations, though which the six parameters can be got to determine the geometry position of the deformed parabolic accurately. Matrix operation can make the algorithm easy to realize in computer. Nan-shan 25m antenna's finite element model is established in ANSYS program, and its result is analyzed compared with another method, confirmed the operability and accuracy of this algorithm. © (2013) Trans Tech Publications, Switzerland. Number of references: 10 Main heading: Deformation Controlled terms: Algorithms - Finite element method - Least squares approximations - Parabolic antennas - Receiving antennas Uncontrolled terms: Antenna performance - Least square errors - Least square methods - Matrix operations - Parabolic Equations - Reflector antennas - Reflector surfaces - Surface fitting Classification code: 421 Strength of Building Materials; Mechanical Properties - 422 Strength of Building Materials; Test Equipment and Methods - 716 Telecommunication; Radar, Radio and Television - 723 Computer Software, Data Handling and Applications - 921 Mathematics - 921.6 Numerical Methods DOI: 10.4028/www.scientific.net/AMM.336-338.1857 Database: Compendex Compilation and indexing terms, © 2013 Elsevier Inc. |
至尊木蟲 (著名寫手)
銀蟲 (小有名氣)

銀蟲 (小有名氣)

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