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排序方式: 共有2800条查询结果,搜索用时 15 毫秒
31.
James S. Bendall Marzia Paderi Francesca Ghigliotti Nello Li Pira Vitoguido Lambertini Vladimir Lesnyak Nikolai Gaponik Giuseppe Visimberga Alexander Eychmüller Clivia M. Sotomayor Torres Mark E. Welland Christina Gieck Leonardo Marchese 《Advanced functional materials》2010,20(19):3298-3302
A novel all‐inorganic electroluminescent device is demonstrated based on highly luminescent CdTe nanocrystals intercalated within a laminar hydrotalcite‐like structure. The laminar scaffold acts to both support and distribute the CdTe nanocrystals. The device is synthesized using simple wet chemical processes at room temperature in ambient conditions. It has high thermal stability, operating continuously up to 90 °C, and a maximum efficiency at J = 0.12 A cm?2. The device is targeted at the automotive industry. 相似文献
32.
V. Torres A. Pérez-Pascual T. Sansaloni J. Valls 《Journal of Signal Processing Systems》2009,56(1):17-23
Timing recovery in communication systems with linear modulations is usually performed with a non-data-aided feedback loop
based on a fractional interpolator timing corrector and the Gardner’s timing error detector. The contribution of this paper
is twofold. First, some design rules are given to predict the behaviour of the loop if pipeline is used. Second, it is shown
that pipelining can be used to reduce power consumption in a timing feedback loop. A timing recovery loop has been implemented
in an FPGA device and power consumption measures indicates that by including 16 extra registers in the loop the power consumption
decreases a 63% and the synchronizer can process up to 66.5 MSPS.
相似文献
J. Valls (Corresponding author)Email: |
33.
J. Meier E. Vallat-Sauvain S. Dubail U. Kroll J. Dubail S. Golay L. Feitknecht P. Torres S. Fay D. Fischer A. Shah 《Solar Energy Materials & Solar Cells》2001,66(1-4)
Hydrogenated microcrystalline silicon prepared at low temperatures by the glow discharge technique is examined here with respect to its role as a new thin-film photovoltaic absorber material. XRD and TEM characterisations reveal that microcrystalline silicon is a semiconductor with a very complex morphology. Microcrystalline p–i–n cells with open-circuit voltages of up to 560–580 mV could be prepared. “Micromorph” tandem solar cells show under outdoor conditions higher short-circuit currents due to the enhanced blue spectra of real sun light and therefore higher efficiencies than under AM1.5 solar simulator conditions. Furthermore, a weak air mass dependence of the short-circuit current density could be observed for such micromorph tandem solar cells. By applying the monolithic series connection based on laser patterning a first micromorph mini-module (total area of 23.6 cm2) with 9% cell conversion efficiency could be fabricated. 相似文献
34.
Camps A. Vall-llossera M. Duffo N. Zapata M. Corbella I. Torres F. Barrena V. 《Geoscience and Remote Sensing, IEEE Transactions on》2004,42(6):1161-1167
The Microwave Imaging Radiometer by Aperture Synthesis (MIRAS) is the single payload of the European Space Agency's (ESA) Soil Moisture and Ocean Salinity (SMOS) Earth Explorer Opportunity mission. MIRAS will be the first two-dimensional aperture synthesis radiometer for Earth observation. Two-dimensional aperture synthesis radiometers can generate brightness temperature images by a Fourier synthesis process without mechanical antenna steering. To do so and have the necessary wide swath for Earth observation, the array is formed by small and low directive antennas, which do not attenuate enough bright noise sources that may interfere with the measurements. This study analyzes the impact of the radio-frequency emission from the Sun in the SMOS mission, reviews the basic image reconstruction algorithms, and proposes a technique to minimize Sun effects. 相似文献
35.
Survey of worldwide high-power wideband capabilities 总被引:2,自引:0,他引:2
Prather W.D. Baum C.E. Torres R.J. Sabath F. Nitsch D. 《Electromagnetic Compatibility, IEEE Transactions on》2004,46(3):335-344
Wideband and ultrawideband (UWB) technologies have achieved notable progress in recent years, aided immeasurably by improvements in solid-state manufacturing, computers, and digitizers. As a result, wideband systems that were difficult or impossible to implement ten years ago are now being built for an increasingly wide variety of applications including transient radar, concealed object detection, mine clearing, pipeline inspections, archeology, geology, electronic effects testing, and communications. In this paper, we discuss current wideband source technology around the world as well as laboratory and test facilities. We also will briefly touch on frequency limitations of anechoic chambers, design of transmission line simulators, frequency regulation requirements for outdoor ranges, and personnel exposure limits. 相似文献
36.
Marleen Morbee Antoni Roca Josep Prades-Nebot Aleksandra Pižurica Wilfried Philips 《Signal, Image and Video Processing》2008,2(2):129-140
In some video coding applications, it is desirable to reduce the complexity of the video encoder at the expense of a more
complex decoder. Wyner–Ziv (WZ) video coding is a new paradigm that aims to achieve this. To allocate a proper number of bits
to each frame, most WZ video coding algorithms use a feedback channel, which allows the decoder to request additional bits
when needed. However, due to these multiple bit requests, the complexity and the latency of WZ video decoders increase massively.
To overcome these problems, in this paper we propose a rate allocation (RA) algorithm for pixel-domain WZ video coders. This
algorithm estimates at the encoder the number of bits needed for the decoding of every frame while still keeping the encoder
complexity low. Experimental results show that, by using our RA algorithm, the number of bit requests over the feedback channel—and
hence, the decoder complexity and the latency—are significantly reduced. Meanwhile, a very near-to-optimal rate-distortion
performance is maintained.
This work has been partially supported by the Spanish Ministry of Education and Science and the European Commission (FEDER)
under grant TEC2005-07751-C02-01.
A. Pižurica is a postdoctoral research fellow of FWO, Flanders. 相似文献
37.
The emissivity of foam-covered water surface at L-band: theoretical modeling and experimental results from the FROG 2003 field experiment 总被引:1,自引:0,他引:1
38.
Vall-llossera M. Camps A. Corbella I. Torres F. Duffo N. Monerris A. Sabia R. Selva D. Antolin C. Lopez-Baeza E. Ferrer J.F. Saleh K. 《Geoscience and Remote Sensing, IEEE Transactions on》2005,43(5):973-982
The goal of the Soil Moisture and Ocean Salinity mission over land is to infer surface soil moisture from multiangular L-band radiometric measurements. As the canopy affects the microwave emission of land, it is necessary to characterize different vegetation layers. This paper presents the Reference Pixel L-Band Experiment (REFLEX), carried out in June-July 2003 at the Vale/spl grave/ncia Anchor Station, Spain, to study the effects of grapevines on the soil emission and on the soil moisture retrieval. A wide range of soil moisture (SM), from saturated to completely dry soil, was measured with the Universitat Polite/spl grave/cnica de Catalunya's L-band Automatic Radiometer (LAURA). Concurrently with the radiometric measurements, the gravimetric soil moisture, temperature, and roughness were measured, and the vines were fully characterized. The opacity and albedo of the vineyard have been estimated and found to be independent on the polarization. The /spl tau/--/spl omega/ model has been used to retrieve the SM and the vegetation parameters, obtaining a good accuracy for incidence angles up to 55/spl deg/. Algorithms with a three-parameter optimization (SM, albedo albedo, and opacity) exhibit a better performance than those with one-parameter optimization (SM). 相似文献
39.
Kierstin Torres Agnieszka Kuc Lorenzo Maschio Thang Pham Kate Reidy Lukas Dekanovsky Zdenek Sofer Frances M. Ross Julian Klein 《Advanced functional materials》2023,33(12):2211366
Understanding the stability limitations and defect formation mechanisms in 2D magnets is essential for their utilization in spintronic and memory technologies. Here, defects in mono- to multilayer CrSBr are correlated with structural, vibrational, and magnetic properties. Resonant Raman scattering is used to reveal distinct vibrational defect signatures. In pristine CrSBr, it is shown that bromine atoms mediate vibrational interlayer coupling, allowing for distinguishing between surface and bulk defect modes. Environmental exposure is shown to cause drastic degradation in monolayers, with the formation of intralayer defects. This is in contrast to multilayers that predominantly show bromine surface defects. Through deliberate ion irradiation, the formation of defect modes is tuned: these are strongly polarized and resonantly enhanced, reflecting the quasi--1D electronic character of CrSBr. Strikingly, pronounced signatures of spin-phonon coupling of the intrinsic phonon modes and the ion beam-induced defect modes are observed throughout the magnetic transition temperature. Overall, defect engineering of magnetic properties is possible, with resonant Raman spectroscopy serving as a direct fingerprint of magnetic phases and defects in CrSBr. 相似文献
40.