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21.
在地下目标低频声波探测中,由于探测信号的混叠,难以判读反射目标的空间位置.应用信号处理方法求解时,目标信号是稀疏序列,求解方程是病态的.运用Bayes反卷积方法修正其病态性,并采用优化的粒子群算法求解,提高了系统的探测分辨率,同时降低了计算量.实际应用表明,该方法是有效的.  相似文献   
22.
卡尔曼滤波器对线性高斯滤波问题能提供最优解, 而对目标运动模型、观测方程等要求的非线性就不再适合,提出了一种机动目标自适应非线性粒子滤波算法-" 粒子滤波器"(Particle Filters PF)法, 这种方法不受线性化误差和高斯噪声假定的限制,适用于任何状态转换或测量模型, 分析比较了粒子滤波(PF)与扩展卡尔曼滤波算法(EKF) 的滤波精度、运算量等方面指标.给出了基于典型非线性模型的算法仿真, 仿真结果表明粒子滤波新方法优于EKF对机动目标跟踪.  相似文献   
23.
本文提出了运用粒子群优化算法来对飞机低空突防进行航迹规划的方法。首先,说明了飞机突防需要满足的物理限制和战术要求。其次,根据低空突防航迹规划约束多,计算复杂的特点引入粒子群优化算法,并且对其进行简要的介绍。应用粒子群优化算法对低空突防战术进行航迹规划。最后实验结果表明,该方法能够对飞机低空突防过程规划出可行的飞行航迹。  相似文献   
24.
《防务技术》2022,18(9):1643-1652
To objectively obtain the three-dimensional coordinates of the projectile fuze proximity explosion when projectile intersects the head of missile target, we propose a dynamic seven photoelectric detection screen test method, which is made up of six plane detection screens and a flash photoelectric dynamic detection screen. The three-dimensional coordinates calculation model of the projectile proximity explosion position based on seven plane detection screens with dynamic characteristics is established. According to the relation of the dynamic seven photoelectric detection screen planes and the time values, the analytical function of the projectile proximity explosion position parameters under non-linear motion is derived. The projectile signal filtering method based on discrete wavelet transform is explored in this work. Additionally, the projectile signal recognition algorithm using an improved particle swarm is proposed. Based on the characteristics of the time duration and the signal peak error for the projectile passing through the detection screen, the signals attribution of the same projectile passing through six detection screens are analyzed for obtaining precise time values of the same projectile passing through the detection screens. On the basis of the projectile fuze proximity explosion test, the linear motion model and the proposed non-linear motion model are used to calculate and compare the same group of projectiles proximity explosion position parameters. The comparison of test results verifies that the proposed test method and calculation model in this work accurately obtain the actual projectile proximity explosion position parameters.  相似文献   
25.
《防务技术》2020,16(2):381-391
This study investigates the effect of tool rotational speed (TRS) on particle distribution in nugget zone (NZ) through quantitative approach and its consequences on the mechanical property of friction stir welded joints of AA6092/17.5 SiCp-T6 composite. 6 mm thick plates are welded at a constant tool tilt angle of 2° and tool traverse speed of 1 mm/s by varying the TRS at 1000 rpm, 1500 rpm and 2000 rpm with a taper pin profiled tool. Microstructure analysis shows large quantity of uniformly shaped smaller size SiC particle with lower average particle area which are homogeneously distributed in the NZ. The fragmentation of bigger size particles has been observed because of abrading action of the hard tool and resulting shearing effect and severe stress generation due to the rotation of tool. The particles occupy maximum area in the matrix compared to that of the base material (BM) due to the redistribution of broken particles as an effect of TRS. The migration of particles towards the TMAZ-NZ transition zone has been also encountered at higher TRS (2000 rpm). The microhardness analysis depicts variation in average hardness from top to bottom of the NZ, minimum for 1500 rpm and maximum for 2000 rpm. The impact strength at 1000 rpm and 1500 rpm remains close to that of BM (21.6 J) while 2000 rpm shows the accountable reduction. The maximum joint efficiency has been achieved at 1500 rpm (84%) and minimum at 1000 rpm (68%) under tensile loading. Fractographic analysis shows mixed mode of failure for BM, 1000 rpm and 1500 rpm, whereas 2000 rpm shows the brittle mode of failure.  相似文献   
26.
在单凹腔燃烧室中引入侧壁激波,为研究燃烧室内部流动特性,采用纳米粒子平面激光散射技术和粒子图像测速技术对全尺寸玻璃燃烧室模型进行流场观测,获得了冷态流场展向和法向的瞬态灰度图及平均速度场。实验结果表明:在远壁面区域,凹腔内部速度与密度都较低;引入侧壁激波后,近壁面区域凹腔与主流的质量与动量交换增强,速度与密度升高;受到侧壁激波影响,燃烧室底壁边界层不再均匀,凹腔中后部产生大规模低速区,具有明显三维特性。  相似文献   
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