Conferences related to Convolvers

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2019 International Symposium on Signals, Circuits and Systems (ISSCS)

ISSCS 2019 aims at bringing together scientists and re-searchers from academia and industry to present and discuss some of their latest ideas and results.


2018 14th IEEE International Conference on Solid-State and Integrated Circuit Technology (ICSICT)

Process & Device Technologies1. Channel Engineering2. High-k/Metal gate Technology3. Advanced Source/Drain Technology4. Interconnect Technology5. Advanced 3D Integration6. Novel Process Technologies7. Ultra-Thin Body Transistors and Device Variability8. Advanced High-k Metal Gate SoC and High Performance CMOS Platforms 9. CMOS Performance Enhancing and Novel Devices 10. Advanced FinFETs and Nanowire FETs11. CNT, MTJ Devices and Nanowire Photodiodes12. Low- Power and Steep Slope Switching Devices13. Graphene Devices14. Advanced Technologies for Ge MOSFETs15. Organic semiconductor devices and technologies16. Compound semiconductor devices and Technology 17. Ultra High Speed Transistors, HEMT/HBT etc. 18. Advanced Power Devices and Reliability19. Flash Memory20. IT Magnetic RAM21. Resistive RAM


2018 25th International Conference on Systems, Signals and Image Processing (IWSSIP)

IWSSIP is an international conference on theoretical, experimental and applied signal processing. IWSSIP brings together researchers and developers from both academia and industry to report on the latest scientific and theoretical advances, to discuss major issues and to demonstrate state-of-the-art systems.


2018 IEEE International Workshop on Signal Processing Systems (SiPS)

CFP Areas of Technical Interest• VLSI Based Design and Implementation of Signal Processing Systems– Low-power signal processing circuits and applications– High performance VLSI systems– VLSI design for 100G and beyond networking systems– FPGA and reconfigurable architecture based systems– System-on-chip and network-on-chip– VLSI Systems for Wireless Sensor Network and RF Identification Systems• Software Based Design and Implementation of Signal Processing Systems– Programmable digital signal processor architecture and systems– Application specific instruction-set processor (ASIP) architecture and systems– SIMD, VLIW and multi-core CPU architecture– Graphic processing unit (GPU) based massively parallel implementation– Embedded FPGA architectures• Design Methods of Signal Processing Algorithms and Architectures– Optimization of signal processing algorithms– Compilers and tools for signal processing system design– Algorithm transformation and algorithm-to-architecture


2018 International Conference on Actual Problems of ElectronDevices Engineering (APEDE)

The conference APEDE will provide a forum for scientists and engineers from Russia and different countries.The goal of this Conference is to bring together the researchers from academia and to share ideas,problems and solutions relating to the multifaceted aspects of Electronics and Technology. Topics of Conference- Microwave Electronics;- Vacuum Microelectronics and Nanoelectronics;- Microwave Theory and Techniques;- Technologies;- Power Electronics;- Applications of Electron Devices.

  • 2016 International Conference on Actual Problems of Electron Devices Engineering (APEDE)

    Microwave electronics Vacuum microelectronics and nanoelectronics Microwave theory and techniques Technologies Applications of electron devices

  • 2014 International Conference on Actual Problems of Electron Devices Engineering (APEDE)

    Papers in the following areas are requested:Microwave electronics, Microwave theory and techniques, Measurement in electronics, Power electronics, Technologies Applications of Electron Devices, Vacuum Microelectronics and nanoelectronics.

  • 2012 International Conference on Actual Problems of Electron Devices Engineering (APEDE)

    Microwave electronics Vacuum Microelectronics and nanoelectronics Microwave theory and techniques Technologies Applications of Electron Devices

  • 2010 International Conference on Actual Problems of Electron Devices Engineering (APEDE)

    The purpose of the conference is to provide a forum for extended interaction between scientists, engineers, and students working in the fields of electronics and device technologies. Papers in the following areas are requested: microwave electronics, including nanoelectronics; microwave theory and techniques; electron devices and instruments application and technology, power electronics.

  • 2008 International Conference on Actual Problems of Electron Devices Engineering (APEDE)

    Microwave Electronics, including semiconductor devices, power-amplifier devices, photonics and optoelectronics, nanoelectronics; Microwave Theory and Techniques, including electromagnetic field analysis and guided waves, resonators, filters, antennas, passive microwave components, acoustic wave components; Electron Devices and Instruments Application and Technology, including power electronics, medical application, sensor and sensor systems, process technology.

  • 2006 International Conference on Actual Problems of Electron Devices Engineering (APEDE)

  • 2004 International Conference on Actual Problems of Electron Devices Engineering (APEDE)

  • 2002 International Conference on Actual Problems of Electron Devices Engineering (APEDE)

  • 2000 International Conference on Actual Problems of Electron Devices Engineering (APEDE)

  • 1998 International Conference on Actual Problems of Electron Devices Engineering (APEDE)


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Periodicals related to Convolvers

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Circuits and Systems I: Regular Papers, IEEE Transactions on

Part I will now contain regular papers focusing on all matters related to fundamental theory, applications, analog and digital signal processing. Part II will report on the latest significant results across all of these topic areas.


Circuits and Systems II: Express Briefs, IEEE Transactions on

Part I will now contain regular papers focusing on all matters related to fundamental theory, applications, analog and digital signal processing. Part II will report on the latest significant results across all of these topic areas.


Communications, IEEE Transactions on

Telephone, telegraphy, facsimile, and point-to-point television, by electromagnetic propagation, including radio; wire; aerial, underground, coaxial, and submarine cables; waveguides, communication satellites, and lasers; in marine, aeronautical, space and fixed station services; repeaters, radio relaying, signal storage, and regeneration; telecommunication error detection and correction; multiplexing and carrier techniques; communication switching systems; data communications; and communication theory. In addition to the above, ...


Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on

Methods, algorithms, and human-machine interfaces for physical and logical design, including: planning, synthesis, partitioning, modeling, simulation, layout, verification, testing, and documentation of integrated-circuit and systems designs of all complexities. Practical applications of aids resulting in producible analog, digital, optical, or microwave integrated circuits are emphasized.


Computers, IEEE Transactions on

Design and analysis of algorithms, computer systems, and digital networks; methods for specifying, measuring, and modeling the performance of computers and computer systems; design of computer components, such as arithmetic units, data storage devices, and interface devices; design of reliable and testable digital devices and systems; computer networks and distributed computer systems; new computer organizations and architectures; applications of VLSI ...


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Most published Xplore authors for Convolvers

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Xplore Articles related to Convolvers

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High data rate spread spectrum demodulators using low-loss SAW matched filters

Proceedings of ISSSTA'95 International Symposium on Spread Spectrum Techniques and Applications, 1996

Compared with the SAW convolver and the digital correlator, the SAW matched filter (tapped delay line) has many advantages in commercial wireless LAN applications, because of its high efficiency and simple configuration. A new type of SAW device for the spread spectrum (SS) transceiver and a low-loss SAW matched filter for the wireless LAN system is described. Two matched filters ...


High efficiency elastic convolver using KNbO/sub 3/ substrate

1997 IEEE Ultrasonics Symposium Proceedings. An International Symposium (Cat. No.97CH36118), 1997

Elastic convolvers are very important for signal processing devices of the spread spectrum communication (SSC) systems. The better efficient convolvers are required for the application for the spread spectrum and next stage communication systems. A high value of coupling coefficient is very important for wideband and high efficiency SAW devices such as SAW convolvers. Potassium niobate (KNbO/sub 3/) has large ...


Adaptable Area-Efficient Parallel Architecture for Grey and Color Image Convolvers

2007 International Symposium on Signals, Circuits and Systems, 2007

Window based spatial domain two dimensional (2-D) image convolution is a widely used algorithm in many image processing applications including intrusion detection. Systolic array architectures have been widely used to implement 2-D convolvers so as to exploit the hardware parallelism on dedicated hardware platforms and thereby increase the throughput of the system. Higher levels of parallelism have not been tried ...


Wide Bandwidth Acoustoelectric Convolvers

1979 Ultrasonics Symposium, 1979

None


A real-time multi-kernel picture convolver

IEEE Proceedings of the Custom Integrated Circuits Conference, 1990

The model used for architectural optimization is discussed. It is then shown that the optimal architecture for 2-D convolution uses a 1-D convolution combinatorial operator to reduce the 2-D problem to a classical 1-D systolic array. Furthermore, for a given technology and chip area, if one tries to apply the proposed cost function to this architecture, it is possible to ...


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Educational Resources on Convolvers

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IEEE.tv Videos

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IEEE-USA E-Books

  • High data rate spread spectrum demodulators using low-loss SAW matched filters

    Compared with the SAW convolver and the digital correlator, the SAW matched filter (tapped delay line) has many advantages in commercial wireless LAN applications, because of its high efficiency and simple configuration. A new type of SAW device for the spread spectrum (SS) transceiver and a low-loss SAW matched filter for the wireless LAN system is described. Two matched filters which correspond to bi-phase data modulation and bandpass filters for the intermediate frequency (IF) section are combined into one device. This SAW matched filter fabricated on ST cut quartz has been practically used in commercial wireless LAN systems and has good temperature stability. To reduce the conversion loss further we have developed an extremely low loss SAW matched filter. The output correlation peak of the matched filter is 3 dB larger than the input level at a 50 /spl Omega/ input and output impedance. This low loss SAW matched filter is fabricated on 128/spl deg/ Y-X LiNbO/sub 3/ substrate and consists of unidirectional transducers. The phase error caused by the temperature coefficient of delay is compensated by using a temperature dependent change of local frequency in the spread spectrum receiver. Under the critical conditions of a 2.4 GHz wireless LAN (data rate is 1.4 Mbps, C/N>2 dB, that is E/sub b//N/sub 0/>13.6 dB, and operation temperature is from -20/spl deg/C to +60/spl deg/C), good performance is achieved with less than a 10/sup -5/ bit error rate.

  • High efficiency elastic convolver using KNbO/sub 3/ substrate

    Elastic convolvers are very important for signal processing devices of the spread spectrum communication (SSC) systems. The better efficient convolvers are required for the application for the spread spectrum and next stage communication systems. A high value of coupling coefficient is very important for wideband and high efficiency SAW devices such as SAW convolvers. Potassium niobate (KNbO/sub 3/) has large piezoelectric constants and very large electromechanical coupling coefficient (K/sup 2/) of 0.53 for the surface acoustic waves which is about 10 times larger than that of LiNbO/sub 3/. Therefore the high efficient elastic SAW convolvers using KNbO/sub 3/ substrates are expected. In this paper, the rotated 60/spl deg/ Y-cut, X-propagating KNbO/sub 3/ substrates are used for a convolver. The experimental results show that the efficiency of the convolver using 60 /spl deg/Y-X KNbO/sub 3/ is 15 dB higher than of he convolver using Y-Z LiNbO/sub 3/.

  • Adaptable Area-Efficient Parallel Architecture for Grey and Color Image Convolvers

    Window based spatial domain two dimensional (2-D) image convolution is a widely used algorithm in many image processing applications including intrusion detection. Systolic array architectures have been widely used to implement 2-D convolvers so as to exploit the hardware parallelism on dedicated hardware platforms and thereby increase the throughput of the system. Higher levels of parallelism have not been tried for 2-D convolvers due to obvious increase in area. We propose an adaptable area-efficient parallel architecture which can be used to increase the throughput. In this paper, we study the advantages of the novel area-time efficient look-up table (LUT) based method for constant coefficient multiplication proposed in our earlier work with increasing levels of parallelism. The area reduction with this architecture increases to about 36% from 1% when the level of parallelism is increased to 8 from 1 on 0.18 um technology. Further, we also evaluate the advantages of the proposed parallel architecture.

  • Wide Bandwidth Acoustoelectric Convolvers

    None

  • A real-time multi-kernel picture convolver

    The model used for architectural optimization is discussed. It is then shown that the optimal architecture for 2-D convolution uses a 1-D convolution combinatorial operator to reduce the 2-D problem to a classical 1-D systolic array. Furthermore, for a given technology and chip area, if one tries to apply the proposed cost function to this architecture, it is possible to predict a practical bound for the kernel size of convolutions that can be implemented on one chip. Details are given of a 5*10 real-time convolver chip that exhibits several new features, including a multi-kernel mode.<<ETX>>

  • A modified version of Van-Cittert's iterative deconvolution procedure

    It is well known that the iterative procedure of deconvolution proposed by Van-Cittert does not converge in every case. This correspondence gives a modified version of this method which converges for a broader class of distortions and removes some artifacts introduced by the original algorithm.

  • Monolithic Thin Film Semiconductor Acoustoelectric Convolver

    None

  • Ultrasonic Image Analysis: Implications For Inwater Imaging

    None

  • SAW Convolver Employing Unidirectional Transducers for Improved Efficiency

    None

  • Wideband Radar Signal Processor Based on SAW Convolvers

    None



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