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101.
首先提出了一种测量目标辐射源脉冲到达时间和到达方向实现固定单站对运动辐射源进行无源定位的算法,该算法克服了EKF(扩展卡尔曼滤波)算法的一些缺点。另外给出了两种将该算法和卡尔曼滤波算法结合的改进方法,可以获得更优的定位效果。计算机仿真结果证明了上述两种方法是正确的。 相似文献
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邹永常 《兵团教育学院学报》2002,12(4):31-33
创作于上个世纪二十年代的乡土小说<黄金>,描写了生活在乡村的一家农户,怎样由小康而堕入贫困,因此受尽了乡邻的轻蔑和冷漠.它写出了中国的农业自然经济社会受到了资本主义文明的侵蚀,引起了人与人之间关系的深刻变化.由此揭示了中国乡村经济破产的必然和主人公悲剧命运产生的根源--虽然带着深深的叹惋,但却是一种无可奈何的历史必然. 相似文献
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针对框体类零件超精密加工的难点问题--内表面问垂直度误差的高精度测量,提出了一种基于波面干涉技术测量的新方法,建立了垂直度测量系统,分析了各调整误差对测量结果的影响.该方法能够实现框体类零件内表面间垂直度误差的高精度测量与评价,并能得到误差的三维分布,测量结果可直接用于零件的确定性修形加工.实验表明,该方法可实现0.6"的综合测量精度. 相似文献
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介绍了计算二维正方点阵液态声子晶体带隙的PWM法。在四氯化碳/水银复合体系中发现了完全带隙,当四氯化碳填充分数为约22%时带隙宽度达到最大值。研究了三种不同截面形状的填充物,其中,圆形截面填充物体系比方形截面及其45°旋转的体系更有利于产生宽带隙。对圆形截面填充物体系,当填充分数为f=0 229时有最宽带隙ΔΩ=0 5497。将填充物和基体交换,即水银/四氯化化碳复合体系中,所得到的带隙宽度显著减小。 相似文献
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《防务技术》2020,16(3):543-554
Underwater acoustic signal processing is one of the research hotspots in underwater acoustics. Noise reduction of underwater acoustic signals is the key to underwater acoustic signal processing. Owing to the complexity of marine environment and the particularity of underwater acoustic channel, noise reduction of underwater acoustic signals has always been a difficult challenge in the field of underwater acoustic signal processing. In order to solve the dilemma, we proposed a novel noise reduction technique for underwater acoustic signals based on complete ensemble empirical mode decomposition with adaptive noise (CEEMDAN), minimum mean square variance criterion (MMSVC) and least mean square adaptive filter (LMSAF). This noise reduction technique, named CEEMDAN-MMSVC-LMSAF, has three main advantages: (i) as an improved algorithm of empirical mode decomposition (EMD) and ensemble EMD (EEMD), CEEMDAN can better suppress mode mixing, and can avoid selecting the number of decomposition in variational mode decomposition (VMD); (ii) MMSVC can identify noisy intrinsic mode function (IMF), and can avoid selecting thresholds of different permutation entropies; (iii) for noise reduction of noisy IMFs, LMSAF overcomes the selection of decomposition number and basis function for wavelet noise reduction. Firstly, CEEMDAN decomposes the original signal into IMFs, which can be divided into noisy IMFs and real IMFs. Then, MMSVC and LMSAF are used to detect identify noisy IMFs and remove noise components from noisy IMFs. Finally, both denoised noisy IMFs and real IMFs are reconstructed and the final denoised signal is obtained. Compared with other noise reduction techniques, the validity of CEEMDAN-MMSVC-LMSAF can be proved by the analysis of simulation signals and real underwater acoustic signals, which has the better noise reduction effect and has practical application value. CEEMDAN-MMSVC-LMSAF also provides a reliable basis for the detection, feature extraction, classification and recognition of underwater acoustic signals. 相似文献
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针对传统最小均方误差(Least Mean Square, LMS)自适应滤波算法由于步长固定,在解决稳态误差与收敛性之间的关系时,始终处于矛盾状态的问题,在对传统的固定步长LMS自适应滤波算法分析的基础上,根据变步长LMS自适应滤波算法的步长调整原则,通过构造步长因子与误差信号的非线性函数,提出了一种基于正态分布曲线的分段式变步长LMS自适应滤波算法,并分析了参数取值对算法性能的影响。针对实际信号处理过程中参考信号难以选取的问题,提出了一种基于分裂阵的参考信号选取方法。理论和海试数据分析结果表明:该算法的收敛速度和稳态误差明显优于固定步长的LMS自适应滤波算法和基于Sigmoid函数的变步长LMS自适应滤波算法。 相似文献