Proceedings of SPIE- The international society for Optical Engineering Volume 698·Real Time Signal Processing 🔍
William J. Miceli, chair/editor; sponsored by SPIE--the International Society for Optical Engineering ; cooperating organizations, Center for Applied Optics, University of Alabama in Huntsville ... [et al.] the Society of Photo-Optical Instrumentation Engineers·Washington, Proceedings of SPIE--the International Society for Optical Engineering -- v. 698, Bellingham, Wash., USA, Washington State, 1987
英语 [en] · PDF · 24.9MB · 1987 · 📗 未知类型的图书 · 🚀/duxiu/ia · Save
描述
I wish to thank all authors and session chairs for contributing to a very sucessful conference.
备选标题
Proceedings of SPIE-The international society for Optical Engineering Volume 698·Real Time Signal Processing IX
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Real Time Signal Processing Ix; 21-22 August 1986 San Diego, California (spie Proceedings Volume 698)
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Real time signal processing IX : (proceedings of the meeting) ; San Diego - Calif., 21-22 August 1986
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International Seminar on Laser and Opto-Electronic Technology in Industry
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State-of-the-art Review : 25-28 June 1986, Xiamen, China
备选作者
Miceli, William J; University of Alabama in Huntsville. Center for Applied Optics; Society of Photo-optical Instrumentation Engineers
备选作者
William J Miceli; Real Time Signal Processing (1, 1978 bis 9, 1986)
备用出版商
Bellingham, Wash., USA: SPIE--the International Society for Optical Engineering
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SPIE - The International Society for Optical Engineering
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Society Of Photo Optical
备用版本
Proceedings of SPIE - the International Society for Optical Engineering, vol. 698, Bellingham - Wash, 1986
备用版本
Place of publication not identified, 1986
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Spie Proceedings Volume 698, August 1986
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United States, United States of America
元数据中的注释
cut off text on some pages due to tight binding
元数据中的注释
Includes bibliographies and index.
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contributor: 浙江大学
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format: Image/Djvu(.djvu)
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unit_name: 浙江大学
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Type: 英文图书
元数据中的注释
Bookmarks:
1. (p1) Session 1 Algorithms And Architectures For Signal Processing
1.1. (p2) A Novel VLSI system of linear equations solver for real time signal processing
1.2. (p10) Systolic partitioned and banded linear algebraic computations
1.3. (p17) Architecture of the systolic linear algebra parallel processor (SLAPP)
1.4. (p22) Efficient implementation for real time applications of the Wigner-Ville distribution
1.5. (p34) Time and space integrating optical laboratory matrix-vector array processor
1.6. (p45) Architectures for a CORDIC SVD processor
1.7. (p54) Hierarchical contour coding simplifies real time pattern recognition
1.8. (p59) Non-convex optimization
2. (p67) Session 2 Trends In Electronic Implementations
2.1. (p68) VLSI implementation of the Fast Fourier Transform
2.2. (p85) Algotecture:advanced modularity in image processing for complex algorithms
2.3. (p92) Design and VLSI implementation of an on-line algorithm
2.4. (p100) A Multilevel pipelined processor for the Singular Value Decomposition
2.5. (p113) Signal processing applications of 70 MHz bit-serial hardware
2.6. (p119) ISI deconvolutional technique used in restoration of image pixel interference
2.7. (p127) Centroid tracker aim point estimation in the presence of sensor noise and clutter
2.8. (p134) Measurement marker recognition in a time sequence of infrared images for biomedical applications
2.9. (p142) A Practical real time SVD machine with multilevel fault tolerance
3. (p149) Session 3 Trends In Optical Processing
3.1. (p150) Enhanced memory capacity of a Hopfield neural network
3.2. (p157) Interconnectability of neuro-optic processors
3.3. (p170) Pattern recognition with a neural net
3.4. (p182) Optical interconnection based symbolic manipulations
3.5. (p184) Digital optical linear 3x3 bit combinatorial systolic multiplication array
3.6. (p191) Speech recognition with an optical crossbar interconnected signal processor
3.7. (p198) Laser-generated beam array for commutation of spatially modulated optical signals
3.8. (p207) THE Gate-controlled photodiode for optical matrix multiplication applications
4. (p211) Session 4 Optical Processors
4.1. (p212) Optical techniques for aiding VLSI testing
4.2. (p221) DFT-based modeling of acousto-optic information processors
4.3. (p227) A New approach to designing optical fiber signal processing
4.4. (p233) Real time optical laboratory linear algebra solution of partial differential equations
4.5. (p248) Three-dimensional photorefractive signal processing in bismuth silicon oxide
4.6. (p257) Three-dimensional integrated circuits using optical interconnects
4.7. (p263) Circulating packet threshold logic to implement MSD logic modules
4.8. (p276) A Hybrid optical system for linear transformation processing
备用描述
William J. Miceli, Chair/editor ; Sponsored By Spie--the International Society For Optical Engineering ; Cooperating Organizations, Center For Applied Optics/university Of Alabama In Huntsville ... [et Al.]. Includes Bibliographies And Index.
备用描述
vi, 281 p. : 28 cm
Includes bibliographies and index
开源日期
2024-07-01
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