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991.
The buildup of four-wave mixing (FWM) is studied for the case of a multichannel coherent system using cascaded optical fibre amplifiers. It is shown, both analytically and numerically, that FW interactions can be either reduced or resonantly enhanced depending on the choice of the amplifier spacing. An example is given of a three channel phase modulated system with a channel separation of 12.5 GHz transmitted over 1000 km. For this example, resonance of FWM occurred at an amplifier spacing of 53 km.<> 相似文献
992.
Milidonis A. Dimitroulakos G. Galanis M. D. Kakarountas A. P. Theodoridis G. Goutis C. Catthoor F. 《Design Automation for Embedded Systems》2004,9(2):101-121
We present an automated framework that partitions the code and data types for the needs of data management in an object-oriented source code. The goal is to identify the crucial data types from data management perspective and separate these from the rest of the code. In this way, the design complexity is reduced allowing the designer to easily focus on the important parts of the code to perform further refinements and optimizations. To achieve this, static and dynamic analysis is performed on the initial C++ specification code. Based on the analysis results, the data types of the application are characterized as crucial or non-crucial. Continuing, the initial code is rewritten automatically in such a way that the crucial data types and the code portions that manipulate them are separated from the rest of the code. Experiments on well-known multimedia and telecom applications demonstrate the correctness of the performed automated analysis and code rewriting as well as the applicability of the introduced framework in terms of execution time and memory requirements. Comparisons with Rational’s QuantifyTM suite show the failure of QuantifyTM to analyze correctly the initial code for the needs of data management. 相似文献
993.
Marzano F.S. Palmacci M. Cimini D. Giuliani G. Turk F.J. 《Geoscience and Remote Sensing, IEEE Transactions on》2004,42(5):1018-1032
The objective of this paper is to investigate how the complementarity between low earth orbit (LEO) microwave (MW) and geostationary earth orbit (GEO) infrared (IR) radiometric measurements can be exploited for satellite rainfall detection and estimation. Rainfall retrieval is pursued at the space-time scale of typical geostationary observations, that is at a spatial resolution of few kilometers and a repetition period of few tens of minutes. The basic idea behind the investigated statistical integration methods follows an established approach consisting in using the satellite MW-based rain-rate estimates, assumed to be accurate enough, to calibrate spaceborne IR measurements on sufficiently limited subregions and time windows. The proposed methodologies are focused on new statistical approaches, namely the multivariate probability matching (MPM) and variance-constrained multiple regression (VMR). The MPM and VMR methods are rigorously formulated and systematically analyzed in terms of relative detection and estimation accuracy and computing efficiency. In order to demonstrate the potentiality of the proposed MW-IR combined rainfall algorithm (MICRA), three case studies are discussed, two on a global scale on November 1999 and 2000 and one over the Mediterranean area. A comprehensive set of statistical parameters for detection and estimation assessment is introduced to evaluate the error budget. For a comparative evaluation, the analysis of these case studies has been extended to similar techniques available in literature. 相似文献
994.
Markovic D. Stojanovic V. Nikolic B. Horowitz M.A. Brodersen R.W. 《Solid-State Circuits, IEEE Journal of》2004,39(8):1282-1293
This paper presents methods for efficient energy-performance optimization at the circuit and micro-architectural levels. The optimal balance between energy and performance is achieved when the sensitivity of energy to a change in performance is equal for all the design variables. The sensitivity-based optimizations minimize energy subject to a delay constraint. Energy savings of about 65% can be achieved without delay penalty with equalization of sensitivities to sizing, supply, and threshold voltage in a 64-bit adder, compared to the reference design sized for minimum delay. Circuit optimization is effective only in the region of about /spl plusmn/30% around the reference delay; outside of this region the optimization becomes too costly either in terms of energy or delay. Using optimal energy-delay tradeoffs from the circuit level and introducing more degrees of freedom, the optimization is hierarchically extended to higher abstraction layers. We focus on the micro-architectural optimization and demonstrate that the scope of energy-efficient optimization can be extended by the choice of circuit topology or the level of parallelism. In a 64-bit ALU example, parallelism of five provides a three-fold performance increase, while requiring the same energy as the reference design. Parallel or time-multiplexed solutions significantly affect the area of their respective designs, so the overall design cost is minimized when optimal energy-area tradeoff is achieved. 相似文献
995.
In recent years, advancements in three technology areas, microelectronics, MEMS sensors, and GPS receivers, have allowed small UAVs to overcome critical deficiencies and become practical for insertion into the military mainstream. The maturation and commercialization of these technologies have resulted in readily available components that have decreased in both size and cost, to the point where truly low-cost, highly capable, small UAVs are possible. In particular, inertial devices such as MEMS accelerometers and angular rate sensors, pressure sensors, and magnetometers have reached the point where they are reliable, accurate, and affordable. These devices allow the determination of vehicle state with the precision required to enable autonomous flight. In addition, advanced microelectronic devices, such as digital signal processors, field programmable gate arrays, and microcontrollers have enabled sophisticated flight control functions, including fully autonomous flight using GPS waypoints. In combination, these advances have allowed small UAVs such as Pointer, Raven, and Dragon Eye to move into full-scale production and continue to allow the progression of UAVs into smaller and smaller packages. To address several of the deployment issues connected with small UAVs, a gun-launched version, along with the underpinning technologies, is under development. This device represents a clear departure from conventional UAVs with several clear advantages; however, it also contains severe design challenges, as well as test and evaluation dilemmas. An option of this type is envisioned not as a replacement for conventional small UAVs but rather as an augmenting capability. 相似文献
996.
Observation of Mode Patterns for High Purity Mode Operation in the Submillimeter Wave Gyrotron FU VA
T. Idehara I. Ogawa S. Maeda R. Pavlichenko S. Mitsudo D. Wagner M. Thumm 《Journal of Infrared, Millimeter and Terahertz Waves》2002,23(9):1287-1295
Operation tests of a cavity designed for high purity mode operation of the submillimeter wave gyrotron FU VA has been carried out successfully. The observed emission patterns of several cavity modes appear very pure and are compared with calculated results. High purity mode operation has the advantage of making the conversion to Gaussian-like beams more efficient. 相似文献
997.
Electronic payment systems 总被引:1,自引:0,他引:1
Trusted electronic payment systems are a key enabler for mass acceptance of electronic commerce over insecure networks such as the Internet. This paper classifies the currently available payment systems on the Internet, and looks at likely payment systems for the future. The need for micropayments is also discussed. 相似文献
998.
Y. D. Kim F. Nakamura E. Yoon D. V. Forbes X. Li J. J. Coleman 《Journal of Electronic Materials》1997,26(10):1164-1168
By monitoring the cyclic behavior of surface photoabsorption (SPA) reflectance changes during the growth of GaAs at 650°C
and with sufficient H2 purging time between the supply of trimethylgallium and AsH3, we have been able to achieve controlled growth of GaAs down to a monolayer. Our results show, as confirmed by photoluminescence
(PL) measurements, the possibility of growing highly accurate quantum well heterostructures by metalorganic chemical vapor
deposition at conventional growth temperatures. We also present our PL measurements on the InGaAs single quantum wells grown
at this temperature by monitoring the SPA signal. 相似文献
999.
X. G. Zhang S. Kalisetty J. Robinson G. Zhao D. W. Parent J. E. Ayers F. C. Jain 《Journal of Electronic Materials》1997,26(6):697-704
ZnSySe1−yZnSe/GaAs (001) heterostructures have been grown by photoassisted metalorganic vapor phase epitaxy, using the sources dimethylzinc,
dimethylselenium, diethylsulfur, and irradiation by a Hg arc lamp. The solid phase composition vs gas phase composition characteristics
have been determined for ZnSyySe1−y grown with different mole fractions of dimethylselenium and different temperatures. Although the growth is not mass-transport
controlled with respect to the column VI precursors, the solid phase composition vs gas phase composition characteristics
are sufficiently gradual so that good compositional control and lattice matching to GaAs substrates can be readily achieved
by photoassisted growth in the temperature range 360°C ≤ T ≤ 400°C. ZnSe/GaAs (001) single heterostructures were grown by
a two-step process with ZnSe thicknesses in the range from 54 nm to 776 nm. Based on 004 x-ray rocking curve full width at
half maximums (FWHMs), we have determined that the critical layer thickness is hc ≤200 nm. Using the classical method involving strain, lattice relaxation is undetectable in layers thinner than 270 nm for
the growth conditions used here. Therefore, the rocking curve FWHM is a more sensitive indicator of lattice relaxation than
the residual strain. For ZnSySe1−y layers grown on ZnSe buffers at 400°C, the measured dislocation density-thickness product Dh increases monotonically with
the room temperature mismatch. Lower values of the Dh product are obtained for epitaxy on 135 nm buffers compared to the case
of 270 nm buffers. This difference is due to the fact that the 135 nm ZnSe buffers are pseudomorphic as deposited. For ZnSySe1−y layers grown on 135 nm ZnSe buffers at 360°C, the minimum dislocation density corresponds approximately to room-temperature
lattice matching (y ∼ 5.9%), rather than growth temperature lattice matching (y ∼ 7.6%). Epitaxial layers with lower dislocation
densities demonstrated superior optical quality, as judged by the near-band edge/deep level emission peak intensity ratio
and the near band edge absolute peak intensity from 300K photoluminescence measurements. 相似文献
1000.
D. Wilkie R. Drwinga E. Eichman N. Kunnari B. Negley D. Richardson 《Microelectronics Reliability》1997,37(3):487-491
The results of a study using a design of experiments approach to examine the effects of environmental operating conditions on serial EEPROM endurance are presented. The conditions studied in the experiment were operating temperature, applied voltage, device type, array usage, write cycles per day, data pattern, and write pulse width. An ANOVA table showing the significant effects and an estimation of the value of the effects using an error minimization technique is presented. While the techniques presented are relatively simple, they may be useful as a quick check of acceleration effects in EEPROM endurance cycling, without the use of extensive factorial experiments. The results show temperature, array size and voltage to be the most important effects on EEPROM endurance cycling. The temperature effect matches other published data. 相似文献