The development of a focal plane array data system for component-level characterization and real-time mission simulation testing

R.H. Fugerer, D.J. Hervig, L. Holt, C. R. Banks, D. I. Jennings, T. Worley
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Abstract

This paper will describe the USAF Arnold Engineering Development Center (AEDC) technology efforts that provide signal processing and data system support for infrared (IR) Focal Plane Array (FPA) testing. The requirements for AEDC space sensor testing range from component-level FPA characterization to advanced mission simulation. The technology efforts underway address these requirements by developing hardware and software that meet AEDC's generic needs for FPA testing. Component-level FPA characterization places unique requirements on system fidelity and bandwidth performance. Diversity in sensor types being tested and levels of sensor integration creates the need for versatility in data handling and sensor interfaces. Mission simulation requirements emphasize the need for extended data storage, system throughput, and data display capabilities. A signal processing system will be presented which addresses AEDC's requirements for component-level sensor operation data acquisition, and flexible interface architectures that can be modified quickly to accommodate different sensor interfaces and data formats. The system will also address the need for high-speed storage of very large data arrays during mission simulation testing. Techniques used to verify and validate system operation will also be presented.
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用于部件级表征和实时任务仿真测试的焦平面阵列数据系统的开发
本文将描述美国空军阿诺德工程开发中心(AEDC)为红外焦平面阵列(FPA)测试提供信号处理和数据系统支持的技术努力。AEDC空间传感器测试的要求范围从部件级FPA特性到高级任务仿真。正在进行的技术努力通过开发硬件和软件来满足AEDC对FPA测试的通用需求。器件级FPA特性对系统保真度和带宽性能提出了独特的要求。被测试的传感器类型和传感器集成水平的多样性创造了对数据处理和传感器接口的多功能性的需求。任务模拟要求强调对扩展数据存储、系统吞吐量和数据显示能力的需求。该信号处理系统将满足AEDC对组件级传感器操作数据采集的要求,以及可快速修改以适应不同传感器接口和数据格式的灵活接口架构。该系统还将在任务模拟测试期间解决超大数据阵列的高速存储需求。还将介绍用于验证和确认系统操作的技术。
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