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Steering and Positioning Targets for HWIL IR Testing at Cryogenic Conditions

机译:在低温条件下进行HWIL IR测试的指导和定位目标

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In order to increase the fidelity of hardware-in-the-loop ground-truth testing, it is desirable to create a dynamic scene of multiple, independently controlled IR point sources. ATK-Mission Research has developed and supplied the steering mirror systems for the 7V and 10V Space Simulation Test Chambers at the Arnold Engineering Development Center (AEDC), Air Force Materiel Command (AFMC). A portion of the 10V system incorporates multiple target sources beam-combined at the focal point of a 20K cryogenic collimator. Each IR source consists of a precision blackbody with cryogenic aperture and filter wheels mounted on a cryogenic two-axis translation stage. This point source target scene is steered by a high-speed steering mirror to produce further complex motion. The scene changes dynamically in order to simulate an actual operational scene as viewed by the System Under Test (SUT) as it executes various dynamic look-direction changes during its flight to a target. Synchronization and real-time hardware-in-the-loop control is accomplished using reflective memory for each subsystem control and feedback loop. This paper focuses on the steering mirror system and the required tradeoffs of optical performance, precision, repeatability and high-speed motion as well as the complications of encoder feedback calibration and operation at 20K.
机译:为了提高硬件在环接地真相测试的保真度,需要创建多个独立控制的IR点源的动态场景。 ATK-Mission Research已为空军装备司令部的Arnold工程开发中心(AEDC)开发并提供了7V和10V空间模拟试验箱的转向镜系统。 10V系统的一部分包含了多个目标源,这些目标源在20K低温准直仪的焦点处进行光束组合。每个红外源均由一个带有低温孔的精密黑体和安装在低温两轴平移台上的滤光轮组成。该点源目标场景由高速转向镜操纵,以产生进一步的复杂运动。场景是动态变化的,以便模拟被测系统(SUT)观察到的实际操作场景,因为它在飞向目标期间会执行各种动态的外观方向更改。同步和实时硬件在环控制是通过对每个子系统控制和反馈环使用反射存储器来完成的。本文着重于转向镜系统以及所需的光学性能,精度,可重复性和高速运动的权衡,以及编码器反馈校准和在20K下工作的复杂性。

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