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The conference program will consist of plenary lectures, symposia, workshops and invitedsessions of the latest significant findings and developments in all the major fields of biomedical engineering.Submitted full papers will be peer reviewed. Accepted high quality papers will be presented in oral and poster sessions,will appear in the Conference Proceedings and will be indexed in PubMed/MEDLINE.
The International Conference on Image Processing (ICIP), sponsored by the IEEE SignalProcessing Society, is the premier forum for the presentation of technological advances andresearch results in the fields of theoretical, experimental, and applied image and videoprocessing. ICIP 2020, the 27th in the series that has been held annually since 1994, bringstogether leading engineers and scientists in image and video processing from around the world.
ICSE is the premier forum for researchers to present and discuss the most recent innovations,trends, outcomes, experiences, and challenges in the field of software engineering. The scopeis broad and includes all original and unpublished results of empirical, conceptual, experimental,and theoretical software engineering research.
Meeting of academia and research professionals to discuss reliability challenges
Energy conversion and conditioning technologies, power electronics, adjustable speed drives and their applications, power electronics for smarter grid, energy efficiency,technologies for sustainable energy systems, converters and power supplies
Experimental and theoretical advances in antennas including design and development, and in the propagation of electromagnetic waves including scattering, diffraction and interaction with continuous media; and applications pertinent to antennas and propagation, such as remote sensing, applied optics, and millimeter and submillimeter wave techniques.
IEEE Antennas and Wireless Propagation Letters (AWP Letters) will be devoted to the rapid electronic publication of short manuscripts in the technical areas of Antennas and Wireless Propagation.
Contains articles on the applications and other relevant technology. Electronic applications include analog and digital circuits employing thin films and active devices such as Josephson junctions. Power applications include magnet design as well asmotors, generators, and power transmission
Speech analysis, synthesis, coding speech recognition, speaker recognition, language modeling, speech production and perception, speech enhancement. In audio, transducers, room acoustics, active sound control, human audition, analysis/synthesis/coding of music, and consumer audio. (8) (IEEE Guide for Authors) The scope for the proposed transactions includes SPEECH PROCESSING - Transmission and storage of Speech signals; speech coding; speech enhancement and noise reduction; ...
The theory, design and application of Control Systems. It shall encompass components, and the integration of these components, as are necessary for the construction of such systems. The word `systems' as used herein shall be interpreted to include physical, biological, organizational and other entities and combinations thereof, which can be represented through a mathematical symbolism. The Field of Interest: shall ...
IEEE International Conference on Consumer Electronics, 1994
1965 IEEE International Solid-State Circuits Conference. Digest of Technical Papers, 1965
2010 International Conference on Audio, Language and Image Processing, 2010
AVS-M audio standard, which targets at wireless network and mobile equipment, is now independently drawn up in China. Its framework is similar to that of AMR-WB+. The performance of AVS-M audio core algorithms is analyzed in this paper. In order to analyze its complexity fixed-point version of AVS-M codec are implemented on DSP platform. At last, a performance evaluation between ...
Proceedings of the IEEE, 1997
Approximately 2 billion people, mainly in Third World countries, are not connected to an electric grid. The standard, centralized grid development is too expensive and time consuming to solve the energy demand problem. Therefore, there is a need for decentralized renewable energy sources. The main attractiveness of solar cells is that they generate electricity directly from sunlight and can be ...
2016 2nd International Conference on Control, Instrumentation, Energy & Communication (CIEC), 2016
The paper describes a novel design that minimizes the effect of small offset errors in comparators of pipeline ADCs. This simple but effective error detection and correction scheme enables to eliminate the requirement of redundant comparators in the stages of a Pipeline ADC. A one bit per stage pipeline like architecture is also proposed. Implementing a single bit per stage ...
Analog Devices SP4T RF MEMS Switch with Integrated Driver Circuitry for RF Instrumentation: MicroApps 2015 - Analog Devices
IEEE Life Sciences: Wearable Medical Devices Advancing bioengineering
Prototyping MIMO Systems with the AD9361: MicroApps 2015 - Analog Devices
802.19: Wireless Coexistence
Radiated Performance Assessment of Wireless Communications Devices - An Operator's Perspective
A Unified Hardware/Software Co-Design Framework for Neuromorphic Computing Devices and Applications - IEEE Rebooting Computing 2017
APEC 2015: KeyTalks - How to Optimize Performance and Reliability of GaN Power Devices
802.15: Wireless Personal Area Network
EDA Challenges in Designing Computing Systems with postCMOS Devices - IEEE Rebooting Computing 2017
IMS 2012 Special Sessions: The Evolution of Some Key Active and Passive Microwave Components - E. C. Niehenke
CES 2015 DAY 1: TAN LE AND MIND-CONTROL TECHNOLOGY
IMS 2012 Special Sessions: The Evolution of Some Key Active and Passive Microwave Components - K. R. Varian
Vint Cerf: A Globecom 2019 Keynote
Mobile Internet Devices at Intel
Evaluating Over-The-Air Performance of MIMO Wireless Devices
Security and Privacy in a World of Connected Devices
Interview with Marcel J.M. Pelgrom - The Pelgrom Law: IEEE Gustav Robert Kirchhoff Award Recipient
APEC 2011-GaN Based Power Devices in Power Electronics
The Long Term Reliability of Gallium Nitride
AVS-M audio standard, which targets at wireless network and mobile equipment, is now independently drawn up in China. Its framework is similar to that of AMR-WB+. The performance of AVS-M audio core algorithms is analyzed in this paper. In order to analyze its complexity fixed-point version of AVS-M codec are implemented on DSP platform. At last, a performance evaluation between AVS-M and AMR-WB+ is discussed. The result is that AVS-M audio performance is no worse than AMR-WB+ on average.
Approximately 2 billion people, mainly in Third World countries, are not connected to an electric grid. The standard, centralized grid development is too expensive and time consuming to solve the energy demand problem. Therefore, there is a need for decentralized renewable energy sources. The main attractiveness of solar cells is that they generate electricity directly from sunlight and can be mounted in modular, stand-alone photovoltaic (PV) systems. Particular attention is paid in this paper to crystalline silicon solar cells, since bulk silicon solar-cell (mono and multi) modules comprise approximately 85% of all worldwide PV module shipments. Energy conversion efficiency as high as 24% has been achieved on laboratory, small-area monocrystalline silicon cells, whereas the typical efficiency of industrial crystalline silicon solar cells is in the range of 13-16%. The market price of PV modules remains for the last few years in the range of $3.5-4.5/watt peak (Wp). For the photovoltaic industry, the biggest concern is to improve the efficiency and decrease the price of the commercial PV modules. Efficiency- enhancement techniques of commercial cells are described in detail. Adaptation of many high-efficiency features to industrially fabricated solar cells. The latest study shows that increasing the PV market size toward 500 MWp/y and accounting for realistic industrial improvements can lead to a drastic PV module price reduction down to $1/Wp.
The paper describes a novel design that minimizes the effect of small offset errors in comparators of pipeline ADCs. This simple but effective error detection and correction scheme enables to eliminate the requirement of redundant comparators in the stages of a Pipeline ADC. A one bit per stage pipeline like architecture is also proposed. Implementing a single bit per stage design, using mono comparator per stage architecture leads to lower power consumption and eliminates the extra cost involved for redundant bits in a pipeline ADC. This error detection scheme is capable of minimizing error in Algorithmic, Successive Approximation or other multi stage or multi step ADCs. The proposed scheme was simulated as well as implemented in hardware using various discrete components and ICs. The developed error correction logic works properly for small comparator offset errors and exhibits fairly accurate results in simulation and as well as in hardware implementation. The designs, if fabricated in IC form, can be a low cost low power alternative to conventional pipeline architectures with a high resolution at a high speed with reasonably good accuracy, though requiring less area and consuming less power.
A band-pass filter on the basis of irregular microstrip varactor-tuned resonators is studied. The amplitude of the tuning rises with growth of the impedance step between microstrip lines forming the resonator. Maximum of tuning takes place when the ratio of low-impedance part length to high- impedance part length reaches 1/2. Ability is demonstrated to design a filter with a constant absolute bandwidth on filter tuning.
High-performance wrapped-select-gate (WSG) SONOS (silicon-oxide-nitride- silicon) memory cells with multi-level and 2-bit/cell operation have been successfully demonstrated. The source-side injection mechanism with different ONO thickness in WSG-SONOS memory was well investigated. The different programming efficiency of the WSG-SONOS memory with different ONO thickness can be explained by the lateral electrical field extracted from the simulation. Furthermore, multi-level storage is easily obtained and well V<sub>th</sub> distribution is also presented. High program/erase speed (10 us/5 ms) and low programming current (3.5 u/A) are performed to achieve the multi-level operation with excellent gate and drain disturbance, second-bit effect, data retention and endurance.
The Cramer-Rao lower bound (CRLB) for one dimensional dual PET imaging of equilibrated tracers was calculated. The CRLB gives us a fundamental limit on the variance one can obtain in simultaneous dual tracer PET imaging when the two tracers are separated based on their difference in tracer half-life. The CRLB depends on the acquisition time, the two tracer half-lives and the ratio of the initial activities of the two tracers. The dual tracer bounds were compared with the bounds found in the single tracer case. Convergence properties of a 2D dual tracer tomographic reconstruction were also investigated. The images were reconstructed using a parametric iterative reconstruction (PIR) algorithm and image quality was compared to the separate mono tracer ML-EM reconstructions. The PIR algorithm was found to recover the two components, however, convergence rates were slower than the mono tracer convergence rates, thus requiring more iterations to reach the same error level. The convergence rate improved drastically for increasing acquisition times. Our analysis can be extended to evaluate the limits of any number of tracer mixtures
This paper proposes maximum torque per ampere (MTPA) control and the active damping control of mono inverter dual parallel (MIDP) permanent magnet synchronous motor (PMSM) drive system. MIDP motor drive system is one of the configurations for reducing the cost of the power conversion circuits. However, it is hard to apply the MIDP motor drive system to PMSMs due to the instability unlike the induction motors. In this paper, optimal current control strategy to minimize the current and the loss is proposed. The MTPA control is executed with not look-up table but real time calculation from the current informations. By minimizing the current, system efficiency can be enhanced. The control methods for MTPA and the active damping are proposed. The proposed control algorithm and strategy are verified through the experiments with 1kW motors.
Malfunctions in the water control circuitry on the RF cavities have induced beam movements in both the horizontal and vertical planes which have been observed by users. A possible cause of such movements could be a cavity higher order mode (HOM). The SRS cavity HOM spectra exhibits some dipole modes which could produce such an effect and investigations have been performed on the SRS which have tried to identify a HOM as the cause of the beam position movement. The data presented here is the result of these investigations, whereby, cavity tuner position, cavity temperature and cavity HOM spectra have been monitored (with beam) as a function of electron beam and photon beam positions.
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