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ELECTRO-OPTICAL TEST SYSTEM DEVELOPMENT: TECHNICAL CHALLENGES NOVEL DESIGN SOLUTION FOR LASER RANGER TESTING

机译:电光测试系统开发:激光游侠测试技术挑战和新颖的设计解决方案

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As the performance of military Electro-Optical systems continues to improve, the measurement capabilities of automated test equipment (ATE) must continue to evolve in parallel. The need to deploy ELECTRO-OPTICAL test systems quickly and remotely has created the need for a new class of portable ATE for ELECTRO-OPTICAL testing and calibration. A prototype Man-Portable Electro-Optic Test System (MPETS) has been built and tested to address this need, with development of an optimized Engineering Development Model (EDM) now underway. MPETS prototype and EDM development involved numerous technical challenges, which necessitated a variety of novel design solutions to address the system's stringent performance requirements, flexible operating modes, broad Unit Under Test (UUT) compatibility, and high degree of portability. This paper will discuss MPETS' technical challenges, relative to Laser Receiver and Ranger testing. MPETS provides the ability to conduct UUT measurements under a wide range of ambient temperature, vibration, and structural support conditions. To address the broad laser UUT performance envelope, the EDM architecture incorporates a novel design solution combining the prototype Laser Energy Module and Laser Boresight Module functions with a newly developed Laser Receiver Range Source. This approach meets a combination of requirements driven by emerging systems which have increased output power and improved sensitivity. Approaches previously used on other systems either did not support the performance, reliability, weight, or temperature requirements. MPETS supports the test and evaluation of Weapon Replaceable Assemblies, Line Replaceable Units, Shop Replaceable Assemblies, and Shop Replaceable Units for Forward Looking InfraRed (FLIR) sensors, visible cameras, Laser Range Finders/Designators, laser trackers, modulated source trackers, and Direct View Optics.
机译:随着军用电光系统的性能继续改善,自动测试设备(ATE)的测量能力必须继续并行地发展。需要快速和远程部署电光测试系统的需要为电光测试和校准创造了新的便携式拍摄。建立并测试了原型男性便携式电光测试系统(MPET),以解决这一需要,并正在进行优化的工程开发模型(EDM)。 MPET原型和EDM开发涉及众多技术挑战,这需要各种新颖的设计解决方案来解决系统严格的性能要求,灵活的操作模式,经过测试的广泛单位(UUT)兼容性,高便携性。本文将讨论MPET的技术挑战,相对于激光接收器和Ranger测试。 MPET提供了在各种环境温度,振动和结构支撑条件下进行UUT测量的能力。为了解决广泛的激光器UUT性能信封,EDM架构采用了一种新颖的设计解决方案,将原型激光能量模块和激光防波模块功能与新开发的激光接收器范围源相结合。这种方法符合由新兴系统驱动的要求组合,该系统具有增加的输出功率和改善的灵敏度。以前用于其他系统的方法无论都不支持性能,可靠性,重量或温度要求。 MPET支持武器可更换组件的测试和评估,线可更换单元,售货机可更换组件,以及用于前进的红外线(FLIR)传感器的可更换单元,可见摄像机,激光范围搜索器/指示符,激光跟踪器,调制源跟踪器和直接查看光学。

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