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Infrared Risley Beam Pointer

机译:红外Risley光束指示器

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Ball Aerospace & Technologies Corp. (BATC) has developed a Risley Beam Pointer (RBP) mechanism capable of agile slewing, accurate pointing and high bandwidth. The RBP is comprised of two wedged prisms that offer a wide Field of Regard (FOR) and may be manufactured and operated with diffraction limited optical quality. The tightly packaged mechanism is capable of steering a 4 inch beam over a 60° half angle cone with better than 60 μrad precision. Absolute accuracy of the beam steering is better than 1 mrad. The conformal nature of the RBP makes it an ideal mechanism for use on low altitude aircraft and unmanned aerial vehicles. Unique aspects of the opto-mechanical design include ⅰ) thermal compliance to maintain bearing preload and optical figure over a wide temperature range; and ⅱ) packaging of a remote infrared sensor that periodically reports the temperature of both prisms for accurate determination of the index of refraction. The pointing control system operates each prism independently and employs an inner rate loop nested within an outer position loop. Mathematics for the transformation between line-of-sight coordinates and prism rotation are hosted on a 200 MHz microcontroller with just 516 KB of RAM.
机译:Ball Aerospace&Technologies Corp.(BATC)开发了一种Risley Beam Pointer(RBP)机制,该机制能够灵活地进行回转,精确指向和高带宽。 RBP由两个楔形棱镜组成,可提供较宽的视场(FOR),并且可以在有限的衍射光学质量下制造和操作。紧密包装的机构能够在60°半角锥上以超过60μrad的精度操纵4英寸光束。光束转向的绝对精度优于1毫弧度。 RBP的保形特性使其成为用于低空飞机和无人飞行器的理想机构。光学机械设计的独特方面包括:ⅰ)热合规性,以在较宽的温度范围内保持轴承的预载和光学形状; ⅱ)包装一个远程红外传感器,该传感器定期报告两个棱镜的温度,以准确确定折射率。指向控制系统独立地操作每个棱镜,并采用嵌套在外部位置环内的内部速率环。用于视线坐标和棱镜旋转之间转换的数学程序托管在一个仅具有516 KB RAM的200 MHz微控制器上。

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