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201.
机动目标建模及机动检测算法   总被引:1,自引:0,他引:1  
为解决机动目标跟踪问题,建立了非机动(匀速直线运动)和机动目标当前统计两种动态模型,并对机动目标当前统计模型的输入控制的估计进行了适当改进.同时对非机动模型的观测残差和机动模型的输入估计进行检验,以便准确检测目标机动.  相似文献   
202.
小波分析在电子装备供电设备故障检测中的应用   总被引:1,自引:0,他引:1  
新型电子装备供电设备封装性能好,可及测点少,故障检测和诊断难度大.在分析供电设备声信号产生机理的基础上,提出了一种利用小波分析理论对声信号进行处理,实现非接触、不解体故障检测与诊断的方法.论证了频带能量分析法和极大值分析法提取故障特征信息的可行性,并给出了故障特征参数算法.实验证明,该方法能有效地检测和诊断故障.  相似文献   
203.
基于线特征的多时相遥感图像变化检测   总被引:3,自引:0,他引:3       下载免费PDF全文
多时相遥感图像中利用线特征可以感知道路等线形地物的变化。论文提出一种新的基于边缘特征描述的线特征变化检测算法,首先根据边缘的梯度信息得到变化边缘,并对变化边缘进行编组,形成变化边缘的直线支撑区域,然后通过最小二乘拟合方法从直线支撑区域中提取出变化直线。提出的线特征变化检测算法把边缘的相位和幅度信息作为变化检测的判定依据,从而避免了线的匹配与比较工作,降低了变化检测的算法复杂度,具有很强的实用性。将提出的方法用于多时相遥感图像变化检测,实验结果显示该方法的有效性。  相似文献   
204.
基于马赫曾德干涉仪模型并采用相位扩散主方程描述大气相位起伏效应对量子雷达的影响,给出了光场在相位扩散通道的演化过程,详细分析了大气相位起伏对相干态宇称探测量子雷达相位估计分辨率和最佳灵敏度的影响,并计算了大气相位起伏下相位估计灵敏度的Cramer-Rao极限。研究发现:相位起伏对于分辨率的影响可通过增加单个脉冲平均光子数来消除。在强相位起伏情况下,宇称探测得到最佳灵敏度会严重偏离散粒噪声极限,但是在弱相位起伏情况下,通过与Cramer-Rao极限的对比,发现宇称探测是一种准最佳探测方案。  相似文献   
205.
针对混响背景中的动目标检测问题,根据基阵接收数据经过波束形成与匹配滤波后的输出结果计算高阶统计量,并将其视作观测空间。基于此空间中混响和目标回波的差异,利用多ping的高阶统计量构造特征向量,计算特征向量之间的马氏距离作为混响和目标差异的量化标准,再依据最大一致条件功效检测准则选择门限检测方法。波形数据仿真与海上实录数据检验均表明该方法的检测性能优于单ping波束形成及匹配滤波方法。通过蒙特卡洛仿真获得不同信混比下的ROC曲线,与单ping检测相比,在保证虚警概率小于0.01,检测概率大于0.5的条件下,最小可检测信混比降低约6dB。  相似文献   
206.
《防务技术》2020,16(1):96-106
The numerical simulation of a blast wave of a multilayer composite charge is investigated. A calculation model of the near-field explosion and far-field propagation of the shock wave of a composite charge is established using the AUTODYN finite element program. Results of the near-field and far-field calculations of the shock wave respectively converge at cell sizes of 0.25–0.5 cm and 1–3 cm. The Euler––flux-corrected transport solver is found to be suitable for the far-field calculation after mapping. A numerical simulation is conducted to study the formation, propagation, and interaction of the shock wave of the composite charge for different initiation modes. It is found that the initiation mode obviously affects the shock-wave waveform and pressure distribution of the composite charge. Additionally, it is found that the area of the overpressure distribution is greatest for internal and external simultaneous initiation, and the peak pressure of the shock wave exponentially decays, fitting the calculation formula of the peak overpressure attenuation under different initiation modes, which is obtained and verified by experiment. The difference between numerical and experimental results is less than 10%, and the peak overpressure of both internal and external initiation is 56.12% higher than that of central single-point initiation.  相似文献   
207.
《防务技术》2020,16(6):1106-1115
In order to study the instability propagation characteristics of the liquid kerosene rotating detonation wave (RDW), a series of experimental tests were carried out on the rotating detonation combustor (RDC) with air-heater. The fuel and oxidizer are room-temperature liquid kerosene and preheated oxygen-enriched air, respectively. The experimental tests keep the equivalence ratio of 0.81 and the oxygen mass fraction of 35% unchanged, and the total mass flow rate is maintained at about 1000 g/s, changing the total temperature of the oxygen-enriched air from 620 K to 860 K. Three different types of instability were observed in the experiments: temporal and spatial instability, mode transition and re-initiation. The interaction between RDW and supply plenum may be the main reason for the fluctuations of detonation wave velocity and pressure peaks with time. Moreover, the inconsistent mixing of fuel and oxidizer at different circumferential positions is related to RDW oscillate spatially. The phenomenon of single-double-single wave transition is analyzed. During the transition, the initial RDW weakens until disappears, and the compression wave strengthens until it becomes a new RDW and propagates steadily. The increased deflagration between the detonation products and the fresh gas layer caused by excessively high temperature is one of the reasons for the RDC quenching and re-initiation.  相似文献   
208.
《防务技术》2020,16(5):969-979
Shock wave is emitted into the plate and sphere when a sphere hypervelocity impacts onto a thin plate. The fragmentation and phase change of the material caused by the propagation and unloading of shock wave could result in the formation of debris cloud eventually. Propagation models are deduced based on one-dimensional shock wave theory and the geometry of sphere, which uses elliptic equations (corresponding to ellipsoid equations in physical space) to describe the propagation of shock wave and the rarefaction wave. The “Effective thickness” is defined as the critical plate thickness that ensures the rarefaction wave overtake the shock wave at the back of the sphere. The “Effective thickness” is directly related to the form of the debris cloud. The relation of the “Effective thickness” and the “Optimum thickness” is also discussed. The impacts of Al spheres onto Al plates are simulated within SPH to verify the propagation models and associated theories. The results show that the wave fronts predicted by the propagation models are closer to the simulation result at higher impact velocity. The curvatures of the wave fronts decrease with the increase of impact velocities. The predicted “Effective thickness” is consistent with the simulation results. The analysis about the shock wave propagation and unloading in this paper can provide a new sight and inspiration for the quantitative study of hypervelocity impact and space debris protection.  相似文献   
209.
为了增强复杂电磁环境中航空集群战术网络的抗干扰能力,提出把同时收发认知抗干扰电台应用于航空集群网络节点,且每个节点采用改进能量检测方法进行干扰感知。在此基础上,分别研究了存在单/多个干扰源时的网络节点干扰感知性能,推导出干扰感知的虚警概率和检测概率的闭式表达。仿真结果表明,通过调节改进能量检测器的参数p,可以提高航空集群机载战术网络的干扰感知能力。  相似文献   
210.
International concern over nuclear terrorism has grown during the past few decades. This has driven a broad spectrum of efforts to strengthen nuclear security globally, including the widespread adoption of radiation-detection technology for border monitoring. Detection systems are now deployed at strategic locations for the purported purpose of detecting and deterring the smuggling of nuclear and radioactive materials. However, despite considerable investment in this area, few studies have examined how these programs are implemented or the operational challenges they face on a day-to-day basis. This article seeks to address this with a focus on radiation-detection efforts at maritime facilities. Utilizing practitioner interviews and a survey, this article identifies the factors that influence the planning and use of these systems in this fast-moving environment. The results clearly demonstrate that the implementation of these systems varies significantly across different national and organizational contexts, resulting in a fragmented global nuclear-detection architecture, which arguably undermines efforts to detect trafficked nuclear-threat materials. Greater consideration should therefore be given to developing international standards and guidance, designing and adopting tools to support key parts of the alarm assessment process, and broader sharing of good practice.  相似文献   
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