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122.
《中国航空学报》2020,33(2):688-700
To improve the resolution and accuracy of Direct Position Determination (DPD), this paper investigates the problem of positioning multiple emitters directly with a single moving Rotating Linear Array (RLA). Firstly, the geometry of the RLA is formulated and analysed. According to its geometry, the intercepted noncoherent signals in multiple interception intervals are modeled. Correspondingly, the MUltiple SIgnal Classification (MUSIC) based noncoherent DPD approach is proposed. Secondly, the synchronous coherent pulse signals are individually considered and formulated. And the coherent DPD approach which aims for localizing this special type of signal is presented by stacking all array responses at different interception intervals. Besides, we also derive the constrained Cramér-Rao Lower Bound (CRLB) expression for both noncoherent and coherent DPD with RLA under the constraint that the altitudes of the emitters are known. At last, computer simulations are included to examine the performance of the proposed approach. The results demonstrate that the localization accuracy and resolution of DPD with single moving linear array can be significantly improved by the array rotation. In addition, coherent DPD with RLA further improves the resolution and increases the maximum emitter number that can be localized compared with the noncoherent DPD with RLA. 相似文献
123.
《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2019,63(11):3721-3737
Impact craters are among the most noticeable geomorphological features on the planetary surface and yield significant information about terrain evolution and the history of the solar system. Thus, the recognition of impact craters is an important branch of modern planetary studies. Aiming at addressing problems associated with the insufficient and inaccurate detection of lunar impact craters, a decision fusion method within the Bayesian network (BN) framework is developed in this paper to handle multi-source information from both optical images and associated digital elevation model (DEM) data. First, we implement the edge-based method for efficiently searching crater candidates which are the image patches that can potentially contain impact craters. Secondly, the multi-source representations of an impact crater derived from both optical images and DEM data are proposed and constructed to quantitatively describe the two-dimensional (2D) and three-dimensional (3D) morphology, consisting of Histogram of Oriented Gradient (HOG), Histogram of Multi-scale Slope (HMS) and Histogram of Multi-scale Aspect (HMA). Finally, a BN-based framework integrates the multi-source representations of impact craters, which can provide reductant and complementary information, for distinguishing craters from non-craters. To evaluate the effectiveness and robustness of the proposed method, experiments were conducted on three lunar scenes using both orthoimages from the Lunar Reconnaissance Orbiter (LRO) and DEM data acquired by the Lunar Orbiter Laser Altimeter (LOLA). Experimental results demonstrate that integrating optical images with DEM data significantly decreases the number of false positives compared with using optical images alone, with F1-score of 84.8% on average. Moreover, compared with other existing fusion methods, our proposed method was quite advantageous especially for the detection of small-scale craters with diameters less than 1000 m. 相似文献
124.
This paper proposes a novel algorithm for Two-Dimensional (2D) central Direction-of-Arrival (DOA) estimation of incoherently distributed sources. In particular, an orthogonal array structure consisting of two Non-uniform Linear Arrays (NLAs) is considered. Based on first-order Taylor series approximation, the Generalized Array Manifold (GAM) model can first be established to separate the central DOAs from the original array manifold. Then, the Hadamard rotational invariance relationships inside the GAMs of two NLAs are identified. With the aid of such relationships, the central elevation and azimuth DOAs can be estimated through a search-free polynomial rooting method. Additionally, a simple parameter pairing of the estimated 2D angular parameters is also accomplished via the Hadamard rotational invariance relationship inside the GAM of the whole array. A secondary but important result is a derivation of closed-form expressions of the Cramer-Rao lower bound. The simulation results show that the proposed algorithm can achieve a remarkably higher precision at less complexity increment compared with the existing low-complexity methods, which benefits from the larger array aperture of the NLAs. Moreover, it requires no priori information about the angular distributed function. 相似文献
125.
在飞行过程中,飞行员需要在短时间内接收大量信息,并做出正确的判断与决策,而过高的认知负荷会影响其感知、判断、决策等认知过程,进而影响飞行安全。首先通过飞行模拟实验获取飞行学员在执行不同飞行任务时的生理数据;然后通过时域、频域分析等方法提取呼吸和心电信号的特征,并通过统计学方法筛选出能够反映认知负荷水平的指标;最后结合支持向量机、K 最邻近、人工神经网络等方法建立集成学习模型,对飞行学员的认知负荷进行评估,并与单一算法进行对比。结果表明:本文建立的集成学习模型具有较高的准确率,能够更好地反映飞行学员认知负荷水平。 相似文献
126.
简要介绍线性预测数据外推的超分辨距离-多普勒成象方法,并以一片高速数字信号处理(DSP)芯片—TMS320C25为核心设计了一个专用信号处理器,能完成数据外推、加窗和128复数点FFT,实现超分辨二维成象。文中给出了对B-52模型飞机微波暗室转台实测数据的成象结果,并作了比较。 相似文献
127.
阵列处理中计算简单的投影法避免了矩阵特征分解(EVD)的庞大计算量,然而仍需进行复数计算。为了进一步减小计算量,提出一种实数域中的投影法,它将投影矩阵及空间谱的计算均简化为实数的计算,从而。使阵处理的计算量大大减少,而且使估计性能保持不变。计算机模拟与实际外场实验数据的计算结果表明了算法的有效性。 相似文献
128.
视频图像压缩技术是多媒体系统不可回避的关键技术。文章对QIF制式标准的视频图像,以P×64标准为核心进行了解码与压缩技术的研究。分析了变换编码、运动补偿、量化和变字长嫡编码对压缩效率与图像质量的影响,并对实时传输的视频图像进行了计算机解码分析。恢复的图像表明:解码是成功的,画面清晰,效果显著。在486微机上软件处理时间为平均为3s/帧,进一步的硬件处理将有可能为实际使用。 相似文献
129.
沈祖炜 《中国空间科学技术》1996,16(5)
介绍探测复合材料层板基体裂纹的三种实验技术:声波发射探测,超声波C扫描和复制带记录。在试验各阶段,应充分利用每种试验方法的优点,使每个试件比常规试验获取更多的试验数据,包括声波发射探测响应图,超声波对整个试件宽度扫描成像,以及沿着试件侧面厚度上的复制带获取图像。最初由声波发射显示试件加载期间基体裂纹的开始形成,通过超声波扫描能清晰分辨出第一条基体裂纹的出现;随着基体裂纹的发展,可综合应用三种实验技术,确定对基体断裂的评估。根据试验结果,对这三种实验技术作了评价。 相似文献
130.