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11.
二维小波变换及其在医学图像处理中的应用   总被引:5,自引:0,他引:5  
介绍了二维离散小波变换的一般形式,在图像分解的基础上.分析了二维小波变换在医学图像消噪和图像增强中的应用,同时给出应用实例。结果表明,应用小波分析进行医学图像处理,能够有效地改善图像质量,有利于医生对病情的诊断和治疗。  相似文献   
12.
本文通过计算机模拟研究,结合气体折射率场的光验知识.考查了将Radon变换迭代法用于光学干涉层析计量含有遮挡物的三维折射率场的重建精度。作为一个应用实例,测量和计算了某一截面的气体温度分布,并与热电偶测量的值进行了比较。  相似文献   
13.
《中国航空学报》2020,33(6):1717-1730
To detect highly maneuvering radar targets in low signal-to-noise ratio conditions, a hybrid long-time integration method is proposed, which combines Radon-Fourier Transform (RFT), Dynamic Programming (DP), and Binary Integration (BI), named RFT-DP-BI. A Markov model with unified range-velocity quantification is formulated to describe the maneuvering target’s motion. Based on this model, long-time hybrid integration is performed. Firstly, the whole integration time is divided into multiple time segments and coherent integration is performed in each segment via RFT. Secondly, non-coherent integration is performed in all segments via DP. Thirdly, 2/4 binary integration is performed to further improve the detection performance. Finally, the detection results are exported together with target range and velocity trajectories. The proposed method can perform the long-time integration of highly maneuvering targets with arbitrary forms of motion. Additionally, it has a low computational cost that is linear to the integration time. Both simulated and real radar data demonstrate that it offers good detection and estimation performances.  相似文献   
14.
《中国航空学报》2016,(5):1397-1404
Due to the lack of information of subsurface lunar regolith stratification which varies along depth, the drilling device may encounter lunar soil and lunar rock randomly in the drilling process. To meet the load safety requirements of unmanned sampling mission under limited orbital resources, the control strategy of autonomous drilling should adapt to the indeterminable lunar environments. Based on the analysis of two types of typical drilling media (i.e., lunar soil and lunar rock), this paper proposes a multi-state control strategy for autonomous lunar drilling. To represent the working circumstances in the lunar subsurface and reduce the complexity of the control algo-rithm, lunar drilling process was categorized into three drilling states:the interface detection, initi-ation of drilling parameters for recognition and drilling medium recognition. Support vector machine (SVM) and continuous wavelet transform were employed for the online recognition of dril-ling media and interface, respectively. Finite state machine was utilized to control the transition among different drilling states. To verify the effectiveness of the multi-state control strategy, drilling experiments were implemented with multi-layered drilling media constructed by lunar soil simulant and lunar rock simulant. The results reveal that the multi-state control method is capable of detect-ing drilling state variation and adjusting drilling parameters timely under vibration interferences. The multi-state control method provides a feasible reference for the control of extraterrestrial autonomous drilling.  相似文献   
15.
This paper addresses the problem of real-time object tracking for unmanned aerial vehicles. We consider the task of object tracking as a classification problem. Training a good classifier always needs a huge number of samples, which is always time-consuming and not suitable for realtime applications. In this paper, we transform the large-scale least-squares problem in the spatial domain to a series of small-scale least-squares problems with constraints in the Fourier domain using the correlation filter technique. Then, this problem is efficiently solved by two stages. In the first stage, a fast method based on recursive least squares is used to solve the correlation filter problem without constraints in the Fourier domain. In the second stage, a weight matrix is constructed to prune the solution attained in the first stage to approach the constraints in the spatial domain. Then, the pruned classifier is used for tracking. To evaluate proposed tracker's performance, comprehensive experiments are conducted on challenging aerial sequences in the UAV123 dataset. Experimental results demonstrate that proposed approach achieves a state-ofthe-art tracking performance in aerial sequences and operates at a mean speed of beyond 40 frames/s. For further analysis of proposed tracker's robustness, extensive experiments are also performed on recent benchmarks OTB50, OTB100, and VOT2016.  相似文献   
16.
某测试台主要运动方式为三自由度正弦摇摆Asinωt,三次谐波摇摆。本文详细阐述了该设备三次谐波谱的精密运动控制、在线实时轨迹显示和静态FFT分析。  相似文献   
17.
本文利用功率谱密度分析磁流变抛光表面的敏感频率误差,发现走刀步距与中高频误差具有直接的关联性,通过小波算法确定其分布区域后,采用大束径的光顺抛光法对敏感频率误差进行控制,测试结果表明中高频误差得到了有效控制。本研究对强光光学零件加工误差的频谱分析、表征和控制具有指导意义。  相似文献   
18.
在多小波变换和DCT变换混合变换域中,提出了一种基于伪随机序列调制的彩色图像盲水印算法。该算法先将原始彩色图像由RGB空间转换到YIQ空间.选取Y分量多小波变换后的中频区域作为水印的嵌入区域。水印嵌入前先对待嵌入水印区域8×8分块,然后对所有子块按照纹理和能量特征进行模糊分类,最后将置乱后的二值水印信息用两个互不相关的伪随机序列进行扩频调制.嵌入到8×8子块DCT变换后的交流系数上。提取水印时,通过比较两个伪随机数列和待检测系数相关性的大小来提取水印,不需要原始图像参与。实验表明,该算法对噪声、JPEG压缩和几何剪切等常见的攻击操作具有很强的鲁棒性。  相似文献   
19.
“天绘一号”卫星是我国第一代传输型立体测绘卫星,搭载有三线阵CCD相机、多光谱相机和2m分辨率全色相机。多光谱相机波段间影像的配准是保证多光谱影像质量和有效应用的前提,在现有配准方法的基础上,文章提出了基于传感器几何特性和图像特征的配准方法来改善影像配准效果。这种方法首先基于相机几何特性对待配准图像进行调整,然后对图像进行局部多点取图,采用尺度不变特征变换(Scale Invariant Feature Transform,SIFT)法提取图像特征并进行初步匹配,利用匹配点领域灰度相关性来进行精匹配和误匹配点的剔除,最后获得图像位移差,进而完成图像配准。实验结果表明,这种方法能够提高多光谱波段间影像的配准成功率,准确率达到95%以上,大幅改善了匹配精度。  相似文献   
20.
针对含噪信号Hilbert-Huang变换存在虚假分量,提出改进的奇异值分解(SVD)方法进行降噪,改进包含两个部分:一是利用重构相空间代替传统矩阵如Hankel矩阵,以去掉信号冗余,再者提出奇异值能量熵分量差分法,更易于定出重构奇异值阶次;二是提出了频谱比值法对虚假分量进行辨识,更有效辨识出虚假分量.首先利用经验模式分解(EMD)得到本征模式分量(IMF),识别并剔除趋势项,重构信号,然后进行SVD,重构降噪后的信号,消除虚假分量,最后进行时频分析.联合方法应用于含噪仿真信号,信噪比(signal noise ratio,SNR)提高了5.5%,虚假分量辨识率提高至100%,用于双跨转子故障振动信号,得到正确的时频结果,表明了所提方法识别含噪信号虚假分量的有效性.  相似文献   
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