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Design of a four-quadrant detector for the laser seeker of guided gun- launched projectile

机译:引导炮弹射弹激光导引器的四象限探测器设计

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The design of a four-quadrant detector for the semi-active laser seeker on the guided gun-launched projectile was studied. Several key parameters of the four-quadrant detector, including the photosensitive area, spectral responsivity, respond speed and noise equivalent power were discussed in the application. A bigger photosensitive area will be benefited to get a larger detection range, however, it will decrease the response speed and increase the positioning time. The spectral responsivity of the detector was chosen to be highly sensitive with the 1064nm wavelength laser, and its responsivities for the other wavelengths were relatively low. As the operation time is short, the response speed of the detector need to be increased as higher as possible, and many influencing factors were compromised in the design. A lower number of NEP was optimized for the better detecting capability. The orientation detection circuit and related positioning algorithm was developed to determine the yaw angle and pitch angle between the projectile and the target. Then the relative position errors, including the lateral and vertical deviation, were obtained from the four-quadrant detector. The influence of the size of facula with respect to the detecting sensitivity and effective measure ranges of the four-quadrant detector were analyzed. Finally, the sizes both of the facula and the four-quadrant detector were designed to ensure the most efficient use of the detecting sensitivity and effective measure ranges of the detector.
机译:研究了用于制导炮弹的半主动激光导引头的四象限探测器的设计。在应用中讨论了四象限探测器的几个关键参数,包括光敏面积,光谱响应度,响应速度和噪声等效功率。较大的感光面积将有利于获得较大的检测范围,但是,它将降低响应速度并增加定位时间。探测器的光谱响应度选择为对1064nm波长的激光高度敏感,而其对其他波长的响应度则相对较低。由于操作时间短,因此需要尽可能提高检测器的响应速度,并且在设计中折衷了许多影响因素。优化了较少的NEP,以实现更好的检测能力。开发了方向检测电路和相关的定位算法,以确定弹丸和目标之间的偏航角和俯仰角。然后从四象限检测器获得相对位置误差,包括横向和纵向偏差。分析了光斑大小对四象限检测器检测灵敏度和有效测量范围的影响。最后,对光斑和四象限检测器的尺寸进行设计,以确保最有效地利用检测器的检测灵敏度和有效测量范围。

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