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1.
反舰导弹攻击海面舰船目标时,通常根据目标的散射特征数据进行目标类型判定并做出决策。但是在高海况下:如果导弹横浪飞行,海浪对导弹命中目标的影响会变小,基本能保证可靠命中目标;但如果导弹顶浪飞行,则海浪会引起目标雷达反射截面积(Radar Cross Section,RCS)的起伏甚至突变,影响导弹对目标的锁定和判断。文章建立了不同海况和舰船目标的融合模型,并针对融合模型仿真计算了导弹不同突击方向时的 RCS,最终根据高海况时舰船横浪或顶浪航行的原则,按照捕捉概率最大的方向确定导弹的攻击方向。  相似文献   

2.
频谱识别技术利用海面及目标回波的多普勒频差来滤除海杂波信号。为准确分析弹目交会时引信回波的多普勒频谱,采用了三维弹目交会模型对弹目不共面时引信回波进行模拟,利用等多普勒线划分海面区域进而计算海面回波多普勒频率,利用目标不同散射点合成的方法推导了目标回波多普勒频率的表达式,并在弹目飞行速率、弹目交会角及目标脱靶量等因素不同时对引信回波多普勒频率进行仿真,通过仿真分析得出了以上因素对引信回波多普勒频率的影响,并验证了频谱识别技术在不同交会条件下的有效性。  相似文献   

3.
海面(或地面)环境中目标电磁散射特性,对实际战场环境下军用目标的雷达探测、雷达特性形成以及雷达目标识别等技术具有基础支撑作用。因此,快速准确地分析目标和粗糙面复合电磁散射特性具有重要理论意义和应用价值。文章采用基于矩量法(MOM)和物理光学法(PO)的混合方法MOM-PO分析了目标和粗糙面复合电磁散射问题。与传统的矩量法相比,该方法在保证精确度的前提下大大加快了计算速度。  相似文献   

4.
为估算运载火箭的RCS(Radar Cross Section,雷达散射截面积),采用部件分解法对运载火箭进行电磁散射几何建模,根据飞行过程中运载火箭和雷达的几何关系建立雷达照射目标视线角的计算模型,并运用高频散射理论提出运载火箭RCS的仿真计算方法;最后,对运载火箭的静态RCS和动态RCS进行仿真计算与分析.结果表明:对运载火箭电磁散射几何建模合理可行,提出的火箭RCS计算方法可以满足工程应用需要.采用该方法仅修改几何建模中的模型结构和部分尺寸参数即可方便计算不同型号运载火箭的RCS特性,可以为航天测控雷达系统设计和布站优化提供依据.  相似文献   

5.
郭杰  殷红成  叶尚军  满良  贾崎 《航空学报》2019,40(7):322732-322732
针对直升机电磁散射特性无源模拟的技术瓶颈,基于直升机桨叶的结构特点和雷达回波特性,提出一种基于小散射源阵列的新型旋翼散射特性增强技术,通过阵列合成公式和数值仿真分析了散射源阵列的雷达散射截面(RCS)的峰值大小、波峰数目、波峰位置、主瓣宽度等特性。同时,将该技术应用于国内某型无人直升机旋翼,设计了原理样机,并在微波暗室里对其电磁特性进行测试。测试结果与理论仿真结果吻合较好,验证了本方案的有效性和可行性,为试验模拟技术提供有力支持。  相似文献   

6.
介绍了一种基于DRFM的高分辨雷达扩展目标回波信号仿真方法,该方法将舰船等复杂目标视为扩展目标,其雷达回波信号可以看作扩展目标各散射中心产生的回波信号的叠加。应用该技术产生的模拟目标回波信号和假目标干扰信号,由于携带雷达发射信号和照射目标特征信息,能顺利进入末制导雷达接收机,仿真效果优于一般常规仿真技术。  相似文献   

7.
在单脉冲测角体制下,由于多径回波信号的干扰,极大地降低了雷达低空目标仰俯角跟踪精度,甚至丢失目标。通过对多路径反射环境模型分析,得出了岸、海基单脉冲雷达低空目标跟踪时仰俯角测量误差的产生原因,提出将传统的多目标分辨算法(C2算法)应用于低角多径环境下目标俯仰角的跟踪测量,并在不同多径反射环境下对不同高度、不同飞行速度和飞行方向的目标进行了仿真,得到良好的仿真结果,表明该算法可较大地提高俯仰角跟踪测量精度。通过对仿真结果的分析,验证了该算法在低空目标跟踪中的有效性和可行性。  相似文献   

8.
为了探求中心线形状对S形二元收敛喷管电磁散射特性的影响规律,在S形二元收敛喷管进出口面积、偏心距、面积变 化规律不变的条件下,结合超椭圆方法设计了5种不同中心线形状变化规律的S形二元收敛喷管,采用多层快速多极子方法对上 述5种喷管进行了雷达散射截面(RCS)仿真计算和分析。结果表明:5种不同中心线形状变化规律的S形二元收敛喷管在不同频率 和不同极化条件下表现出不同变化规律的雷达隐身特性;综合分析中心线形状C(缓急相当)的喷管整体雷达隐身性能较好,RCS 平均值最高为0.953 dBm 2 、最低为-1.3 dBm 2 ;中心线形状E(前急后缓)的喷管,RCS平均值为1.6 dBm 2 ~2.209 dBm 2 ;中心线形状B 的喷管雷达隐身性能最差,RCS平均值最高为2.71 dBm 2 、最低为0.081 dBm 2 。  相似文献   

9.
空间目标三维成像可为目标的特征提取、分类与识别提供重要依据。基于L型三天线干涉成像原理,提出了一种宽带雷达条件下空间自旋目标干涉三维成像方法。首先,分析了雷达发射线性调频(LFM)信号条件下,空间自旋目标在距离-慢时间平面上的成像特点,建立了基于距离-慢时间平面的空间自旋目标干涉三维成像模型;其次,针对建立的干涉三维成像模型中,不同散射点的回波在距离-慢时间平面上会相互交叠的问题,对回波曲线分离、交叉点处理以及一维距离旁瓣的影响等进行了讨论,并给出了解决方法,从而获得目标三维图像。与已有方法相比,该方法可有效克服单基雷达三维成像无法获得目标各散射点真实三维位置以及在双/多基雷达三维成像时多部雷达回波联合处理较困难的问题。最后,仿真实验结果验证了所提方法的有效性。  相似文献   

10.
阐述了根据电磁波几何绕射理论所建立的舰船目标雷达回波模型,利用该模型可产生多种假设目标的回波数据,用于弥补科研试验过程中所需的多种条件下的雷达目标回波数据,所建模型在实际试验中得到了较好的应用.  相似文献   

11.
董纯柱  任红梅  殷红成  王超 《航空学报》2016,37(4):1272-1280
为了获取基于模板图像的车辆、飞机等复杂目标识别所需的海量高质量逆合成孔径雷达(ISAR)图像,提出了表面粗糙的复杂目标全极化ISAR图像快速仿真方法。该方法预先对车辆和飞机等复杂目标表面粗糙程度进行分级定量描述,并以改进的射线弹跳法和等效边缘流法快速预估来自目标粗糙表面的镜面反射和多次反射贡献以及细分边缘的绕射贡献,经相干叠加获得目标的精确电磁散射数据,最后进行成像处理得到高质量全极化ISAR图像。标准体、飞机和车辆目标的仿真实验结果验证了该方法的准确性和有效性。  相似文献   

12.
The problem of inverse synthetic aperture radar (ISAR) image reconstruction of targets at low elevation angle is considered. In this geometric condition the main causes affecting the reconstructed ISAR image are the multipath effect due to the reflection of the Earth's surface and the angular motions of the target produced by external action like wind, fast maneuvering, and sea waves as in the case of ships. The aim of this work is to analyze the effects that the multipath and the target angular motions jointly produce on the ISAR image. The results show that multipath generates some artifacts in the image whereas the target oscillations undergo a spatial-dependent blurring of the point spread function of the ISAR system. These theoretical results are validated by presenting some numerical examples relevant to aircrafts and ships in rectilinear or circular motion. A wide discussion on possible solutions of this problem is made in the conclusion  相似文献   

13.
Airborne GPS systems are being upgraded to provide sufficient positioning accuracy to support automatic landing operations in low visibility conditions. This is made possible by differential GPS (DGPS), in which the errors common to the airborne receiver and ground station are removed by knowledge of the latter's precise location. However, errors specific to the airborne system remain, of which the dominant components are receiver noise and multipath. To support the assessment of the integrity of the signal in space, these residual errors are incorporated in a statistically based error model, designated as the "standard model." The standard model is defined as the standard deviation of a Gaussian distribution that overbounds the residual pseudo-range (PR) error. It relates the standard deviation of the overbounding distribution to the elevation angle of the satellite relative to the local level coordinate system. The international community is currently developing improved standards to enable DGPS systems to support landings in the worst visibility conditions (i.e., CAT III). As a part of this development, the standard model for multipath is being re-evaluated and an improved model is sought. In order to better characterize the residual multipath errors, tools for accurate calculation of the airframe scattering effects are needed. Development of such tools is the subject of this paper. A new method for accurately computing pseudo-range error, based on the use of high-fidelity EM models, is described. This approach provides new insight into the mechanisms causing multipath error.  相似文献   

14.
Tracking low-altitude targets over the sea is problematic because of interference between the direct and reflected signal. Standard monopulse trackers can experience large errors because of multipath maximum likelihood estimation (MLE) has been used to more accurately estimate the target height in the presence of multipath MLE is a model-fitting technique where the model parameters are chosen to maximize the likelihood function. It is shown that the type of observation model has a large effect on performance. Tracking performance is compared using three different observation models employing varying amounts of a priori information. Results are presented for different array sizes: eight and 32-element arrays and two-element subarrays typical of phase monopulse. Performance is compared with that of standard techniques such as Fourier beamforming and phase monopulse  相似文献   

15.
Multipath Limitations on Low-Angle Radar Tracking   总被引:2,自引:0,他引:2  
This paper investigates the problem of tracking targets at a low elevation angle in the presence of specular and diffuse multipath. Quantitative estimates are derived of the elevation angles, and hence, range, at which targets of specified height can be accurately tracked. A parametric approach is followed in which the long-standing uncertainty of how terrain forward-scatters at low grazing angles is recognized at the outset. Particular attention is given to the effects of target motion which permit rejection of multipath components falling outside the radar tracker's passband. The results are presented in a form which can be readily applied to a spectrum of radar trackers with differing requirements. The limited experimental ental data on the specular and diffuse scattering parameters for several generic types of terrain are applied to estimate the significance of multipath under different situations and to indicate specific areas in which additional experimental data are critically needed.  相似文献   

16.
Diffuse multipath is a random phenomenon that arises out of the diffraction of waves from rough surfaces. This form of multipath can in turn affect the angle estimation performance of monopulse antenna systems. In order to evaluate its effect, it is necessary to obtain the channel spread function that results. This function is basically the wave number spectrum of the resulting random field generated by the scattering. To do this, use is made of the Kodis-Barrick arrick scattering cross section and Wagner's shadowing function. The evaluation is performed for the specific geometry of a spherical earth. Evaluation of the system performance degradation is made for various angle estimation system configurations.  相似文献   

17.
A multipath propagation model for aeronautical telemetry over water at 8.0 GHz is presented. Data recorded during channel sounding experiments, conducted over the Pacific Ocean near Point Mugu, CA was used to model the multipath propagation. The modeling results show that a three-ray model consisting of line-of-sight propagation and two reflected propagation paths is a good fit for the measured channel frequency responses. One of the reflected propagation paths is a strong specular reflection determined by the geometry defined by the airborne transmitter, the ground-based receiver, and the sea surface. For the flight profiles used, the delay of this path is between 10 and 50 ns. The other propagation path is a more diffuse, random reflection whose amplitude is significantly smaller than the amplitude of the specular reflection and whose mean excess delay is 57 ns with an rms delay spread of 25 ns.  相似文献   

18.
The results of a theoretical investigation of the influence of polarization on multipath are presented. First, the case of a point target is examined and it is confirmed that the multipath effect tends to vanish for rough sea and small grazing angles. Models of a buoy and of a large ship are then introduced and it is shown that, for targets that are extended in height, the multipath effect for vertical and horizontal polarization is substantially the same.  相似文献   

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