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文章阐述了将图像分割技术应用于雷达地形纹理分割中,用基于 FCM 图像分割方法对可见光纹理进行区域自动识别,形成互不相交的纹理区域,并借助建立的雷达材质库对区域材质进行指定,有效解决了海量地形纹理数据处理的难题,并提高了处理的准确性. 相似文献
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基于聚类模糊系统的动态数据野值剔除方法 总被引:1,自引:0,他引:1
针对影响遥测参数处理和分析的野值问题,提出了基于聚类法实时设计模糊系统实现动态数据野值辨识和剔除的新方法。该方法能够自适应跟踪不同变化特性的遥测参数,基于聚类法实现模糊系统的动态建模并获得预测值与观测值的残差序列,再按照狄克松准则实现野值的快速剔除。对实测数据的仿真实验表明:该方法能够显著降低动态建模的复杂度,快速跟踪信号变化,方法可行且有效。 相似文献
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《中国航空学报》2020,33(7):2070-2087
To consider fiber random distribution at the microscale for the multiscale model based on the micro-mechanics failure (MMF) theory, clustering method is used for the extraction of amplification factors. As the clustering method is a kind of unsupervised machine learning method, the elements with similar mechanical behavior under external loading can be included in a cluster automatically at the microscale. With this modification, the fiber random distribution model can be used for multiscale damage analysis in the framework of MMF theory. To validate the modified multiscale analysis method, progressive damage analysis of a kind of 2D twill woven composites is conducted based on different microscale models. The stress values for microscale models with fiber hexagonal and random distribution patterns are compared first. Much higher stress concentration is generated in the fiber random distribution model due to the smaller inter-fiber distance especially under longitudinal shear loading. The obtained cluster distribution results exhibit the characters of the stress distribution in the two microscale models. Thereafter, tensile and compressive responses of the 2D twill woven composite are predicted with the modified multiscale analysis method and accuracy of the method is verified through comparison with published experimental results. From the simulation results, it can be found that the matrix damage initiation from the model based on the fiber random distribution model is premature compared with that from the model based on the fiber hexagonal distribution model. Besides, under tensile loading, the damage all initiates from the fill tows and propagates to the wrap tows. However, under compressive loading, the matrix damage initiates from the wrap tows in the model based on the fiber random distribution model. 相似文献
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基于星座图恢复的PSK信号调制方式盲识别 总被引:2,自引:0,他引:2
针对非协作通信条件下PSK信号识别问题,提出了一种基于星座图恢复的MPSK/MDPSK信号调制方式盲识别系统.该系统不需要信号任何先验信息,星座图恢复所需的参数如载波频率、符号速率、位定时信息均从接收序列中估计得到,同时,在系统中采用相位差分的方法以消除由载波估计偏差引起的星座图扩散.提出并定义信号隶属度函数,该函数利用星座图盲聚类得到的聚类中心的数目计算隶属度来实现MPSK和MDPSK信号调制方式识别.仿真表明,在AWGN信道条件下,当SNR>11dB时,对所有信号的识别率大于90%,对于BPSK、4PSK信号在SNR>6dB时识别率达到100%,证明了该算法的有效性. 相似文献
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K. Koutroumbas I. TsagouriA. Belehaki 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2010
This paper presents an analysis of a set of time series that represent foF2 disturbances during storm conditions, using clustering tools. The time series under study have been drawn from ionospheric observations obtained from eight European middle latitude ionosondes during a significant number of storm-time intervals and they are divided into eight groups according to the latitude (middle to low and middle to high) and the local time of the observation point at storm onset (afternoon, evening, morning, prenoon). The time series in each group have been analyzed using clustering-based methods. Specifically, each time series has been represented using two different ways of representation: the first is the raw representation while the second is through the parameters of the autoregressive (AR) model that best represents it. For each representation a hierarchy of clusterings is produced via the complete link algorithm. The two produced hierarchies are combined to a single one and the final clustering results are extracted from the produced hierarchy. The obtained results are in close agreement with the theoretical formulations concerning ionospheric storm effects at middle latitudes. In addition, they may be proved useful in the development of more accurate ionospheric forecasting methods. 相似文献
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基于进化计算的无人飞行器多航迹规划 总被引:9,自引:4,他引:9
针对飞行器多航迹规划问题展开研究。在分析多峰值函数优化问题的基础上,提出了一种基于进化计算的飞行器多航迹规划方法。该方法通过使用特定的染色体表示方法和进化算子,可以有效利用各种环境信息,处理各种航迹约束。同时,通过引入聚类算法,将种群中的个体按其空间分布进行聚类,生成若干个不同子种群。在进化过程中,所有个体只在各自的子种群内部进化。当进化结束时,每个子种群将分别生成一条各自的最优航迹,从而为飞行器生成多条不同的可选航迹。仿真结果表明了该方法的有效性。 相似文献