首页> 外文会议>Conference on Photonics North 2006; 20060605-08; Quebec City(CA) >Holographic Elements and Curved Slit used to Enlarge Field of View in Rocket Detection System
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Holographic Elements and Curved Slit used to Enlarge Field of View in Rocket Detection System

机译:用于扩大火箭探测系统视场的全息元件和弯曲狭缝

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Rocket detection over a wide field of view is an important issue in the protection of light armored vehicle. Traditionally, the detection occurs in UV band, but recent studies have shown the existence of significant emission peaks in the visible and near infrared at rocket launch time. The use of the visible region is interesting in order to reduce the weight and cost of systems. Current methods to detect those specific peaks involve use of interferometric filters. However, they fail to combine wide angle with wavelength selectivity. A linear array of volume holographic elements combined with a curved exit slit is proposed for the development of a wide field of view sensor for the detection of solid propellant motor launch flash. The sensor is envisaged to trigger an active protection system. On the basis of geometric theory, a system has been designed. It consists of a collector, a linear array of holographic elements, a curved slit and a detector. The collector is an off-axis parabolic mirror. Holographic elements are recorded subdividing a hologram film in regions, each individually exposed with a different incidence angle. All regions have a common diffraction angle. The incident angle determines the instantaneous field of view of the elements. The volume hologram performs the function of separating and focusing the diffracted beam on an image plane to achieve wavelength filtering. Conical diffraction property is used to enlarge the field of view in elevation. A curved slit was designed to correspond to oblique incidence of the holographic linear array. It is situated at the image plane and filters the diffracted spectrum toward the sensor. The field of view of the design was calculated to be 34 degrees. This was validated by a prototype tested during a field trial. Results are presented and analyzed. The system succeeded in detecting the rocket launch flash at desired fields of view.
机译:在保护轻型装甲车方面,大范围的火箭探测是一个重要的问题。传统上,检测发生在紫外线波段,但是最近的研究表明,在火箭发射时,可见光和近红外光中存在明显的发射峰。为了减少系统的重量和成本,使用可见区域是令人感兴趣的。当前用于检测那些特定峰的方法涉及使用干涉滤光片。但是,它们不能将广角与波长选择性结合在一起。提出了线性全息的体积全息元件与弯曲的出口狭缝相结合,以开发用于固体推进剂电机发射闪光检测的宽视场传感器。设想该传感器触发主动保护系统。根据几何理论,设计了一个系统。它由收集器,全息元件的线性阵列,弯曲的狭缝和检测器组成。收集器是离轴抛物面反射镜。记录全息元件,将全息膜细分成区域,每个区域分别以不同的入射角曝光。所有区域都具有共同的衍射角。入射角决定了元件的瞬时视场。体全息图执行将衍射光束分离并聚焦在像面上以实现波长滤波的功能。圆锥形衍射特性用于扩大视场。设计弯曲的缝隙以对应于全息线性阵列的倾斜入射。它位于像平面处,并朝着传感器过滤衍射光谱。设计的视场被计算为34度。这通过在现场试验中测试过的原型进行了验证。结果被提出和分析。该系统成功地在期望的视场中检测到了火箭的发射闪光。

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