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981.
在SAR图像目标识别、图像匹配等应用中,定义合理可靠的相似度尤为重要。该文在分析现有SAR图像相似度基础上,提出一种基于像素差值编码的相似度准则。首先将SAR图像按照相邻像素灰度差异生成编码图像,然后以编码图像之间的一致性作为相似度。该文从理论上证明了该相似度对SAR图像中相干斑噪声、部分遮挡和模糊等因素的鲁棒性和适应性,还讨论了将该准则应用于SAR图像匹配时,如何针对不确定性,给出一定置信水平下所有合理的匹配位置。理论和实验结果表明该文提出的相似度准则对SAR图像上相干斑噪声、部分遮挡以及模糊不敏感,能有效应用于不确定SAR图像的匹配。 相似文献
982.
Enhanced Frequency-Domain Frost Algorithm Using Conjugate Gradient Techniques for Speech Enhancement
In this paper, the frequency-domain Frost algorithm is enhanced by using conjugate gradient techniques for speech enhancement. Unlike the non-adaptive approach of computing the optimum minimum variance distortionless response (MVDR) solution with the correlation matrix inversion, the Frost algorithm implementing the stochastic constrained least mean square (LMS) algorithm can adaptively converge to the MVDR solution in mean-square sense, but with a very slow convergence rate. In this paper, we propose a frequency-domain constrained conjugate gradient (FDCCG) algorithm to speed up the convergence. The devised FDCCG algorithm avoids the matrix inversion and exhibits fast convergence. The speech enhancement experiments for the target speech signal corrupted by two and five interfering speech signals are demonstrated by using a four-channel acoustic-vector-sensor (AVS) micro-phone array and show the superior performance. 相似文献
983.
This work presents a novel scalable multiplication algorithm for a type-t Gaussian normal basis (GNB) of GF(2m). Utilizing the basic characteristics of MSD-first and LSD-first schemes with d-bit digit size, the GNB multiplication can be decomposed into n(n + 1) Hankel matrix-vector multiplications. where n = (mt + 1)/d. The proposed scalable architectures for computing GNB multiplication comprise of one d × d Hankel multiplier, four registers and one final reduction polynomial circuit. Using the relationship of the basis conversion from the GNB to the normal basis, we also present the modified scalable multiplier which requires only nk Hankel multiplications, where k = mt/2d if m is even or k = (mt − t + 2)/2d if m is odd. The developed scalable multipliers have the feature of scalability. It is shown that, as the selected digit size d ≥ 8, the proposed scalable architectures have significantly lower time-area complexity than existing digit-serial multipliers. Moreover, the proposed architectures have the features of regularity, modularity, and local interconnection ability. Accordingly, they are well suited for VLSI implementation. 相似文献
984.
Recently, great attention has been devoted to the pulsed direct current (DC) reactive magnetron sputtering technique, due
to its ability to reduce arcing and target poisoning, and its capability of producing insulating thin films. In this study,
chromium nitride (CrN) coatings were deposited by the bipolar symmetric pulsed DC magnetron reactive sputtering process at
different pulse frequency, substrate bias voltage, and the substrate temperature. It was observed that the texture of CrN
changed from (111) to (200) as substrate temperature increased to 300°C as deposited at 2 kHz without substrate bias. With
increasing pulsing bias and pulse frequency of target, predominated (200) orientation of CrN film was shown due to the ion
bombardment/channeling effect to preferentially sputter those unaligned planes. For the CrN coatings deposited with pulsed
biasing, the grain size decreased with increasing pulse frequency and substrate bias, whereas the surface roughness showed
a reverse trend. The deposition rate of the CrN films decreased with increasing pulse frequency. It was concluded that the
pulse frequency, substrate bias, and substrate temperature played important role in the texture, microstructure, and surface
roughness of the CrN coatings deposited by the pulsed DC magnetron sputtering process. 相似文献
985.
In this paper, we will present our recent research on the growth and characterization of some Si-based heterostructures for
optical and photonic devices. The heterostructures to be discussed are ZnO nanorods on Si, SiO2, and other substrates such as SiN and sapphire. We will also consider strained Si1−xGex/Si heterostructures for Si optoelectronics. The performance and functionality extension of Si technology for photonic applications
due to the development of such heterostructures will be presented. We will focus on the results of structural and optical
characterization in relation to device properties. The structural characterization includes x-ray diffraction for assessment
of the crystallinity and stress in the films and secondary ion mass spectrometry for chemical analysis. The optical properties
and electronic structure were investigated by using photoluminescence. The device application of these thin film structures
includes detectors, lasers, and light emitting devices. Some of the Si-based heterostructures to be presented include devices
emitting and detecting up to the blue-green and violet wave lengths. 相似文献
986.
Yoonyoung Jin P. K. Ajmera G. S. Lee Varshni Singh 《Journal of Electronic Materials》2005,34(9):1193-1205
Low dielectric constant materials as interlayer dielectrics (ILDs) offer a way to reduce the RC time delay in high-performance
ultra-large-scale integration (ULSI) circuits. Fluorocarbon films containing silicon have been developed for interlayer applications
below 50-nm linewidth technology. The preparation of the films was carried out by plasma-enhanced chemical vapor deposition
(PECVD) using gas precursors of tetrafluorocarbon as the source of active species and disilane (5 vol.% in helium) as a reducing
agent to control the ratio of F/C in the films. The basic properties of the low dielectric constant (low-k) interlayer dielectric
films are studied as a function of the fabrication process parameters. The electrical, mechanical, chemical, and thermal properties
were evaluated including dielectric constant, surface planarity, hardness, residual stress, chemical bond structure, and shrinkage
upon heat treatments. The deposition process conditions were optimized for film thermal stability while maintaining a relative
dielectric value as low as 2.0. The average breakdown field strength was 4.74 MV/cm. The optical energy gap was in the range
2.2–2.4 eV. The hardness and residual stress in the optimized processed SiCF films were, respectively, measured to be in the
range 1.4–1.78 GPa and in the range 11.6–23.2 MPa of compressive stress. 相似文献
987.
988.
989.
Yogesh Sharma Radhe Agarwal Liam Collins Qiang Zheng Anton V. Ievlev Raphael P. Hermann Valentino R. Cooper Santosh KC Ilia N. Ivanov Ram S. Katiyar Sergei V. Kalinin Ho Nyung Lee Seungbum Hong Thomas Z. Ward 《Advanced functional materials》2020,30(3)
Multiferroic materials have driven significant research interest due to their promising technological potential. Developing new room‐temperature multiferroics and understanding their fundamental properties are important to reveal unanticipated physical phenomena and potential applications. Here, a new room temperature multiferroic nanocomposite comprised of an ordered ferrimagnetic spinel α‐LiFe5O8 (LFO) and a ferroelectric perovskite BiFeO3 (BFO) is presented. It is observed that lithium (Li)‐doping in BFO favors the formation of LFO spinel as a secondary phase during the synthesis of LixBi1?xFeO3 ceramics. Multimodal functional and chemical imaging methods are used to map the relationship between doping‐induced phase separation and local ferroic properties in both the BFO‐LFO composite ceramics and self‐assembled nanocomposite thin films. The energetics of phase separation in Li doped BFO and the formation of BFO‐LFO composites are supported by first principles calculations. These findings shed light on Li's role in the formation of a functionally important room temperature multiferroic and open a new approach in the synthesis of light element doped nanocomposites for future energy, sensing, and memory applications. 相似文献
990.
Hao Wu Lu Zhang Jinfan Yang Ruonan Bo Hongxu Du Kai Lin Dalin Zhang Mythili Ramachandran Yingbin Shen Yangxi Xu Xiangdong Xue Zhao Ma Aaron Raymond Lindstrom Randy Carney Tzu‐Yin Lin Yuanpei Li 《Advanced functional materials》2020,30(15)
Real‐time tracking of the dynamics change of self‐assembled nanostructures in physiological environments is crucial to improving their delivery efficiency and therapeutic effects. However, such tracking is impeded by the complex biological microenvironment leading to inhomogeneous distribution. A rotatable fluorescent ratio strategy is introduced that integrates aggregation‐induced emission (AIE) and aggregation‐caused quenching (ACQ) into one nanostructured system, termed AIE and ACQ fluorescence ratio (AAR). Following this strategy, an advanced probe, PEG5k‐TPE4‐ICGD4 (PTI), is developed to track the dynamics change. The extremely sharp fluorescent changes (up to 4008‐fold) in AAR allowed for the clear distinguishing and localization of the intact state and diverse dissociated states. The spatiotemporal distribution and structural dynamics of the PTI micelles can be tracked, quantitatively analyzed in living cells and animal tissue by the real‐time ratio map, and be used to monitor other responsive nanoplatforms. With this method, the dynamics of nanoparticle in different organelles are able to be investigated and validated by transmission electron microscopy. This novel strategy is generally applicable to many self‐assembled nanostructures for understanding delivery mechanism in living systems, ultimately to enhance their performance in biomedical applications. 相似文献