A description of the hardware element of the NASA EME flight tests

K. Dudley
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引用次数: 3

Abstract

In support of NASA's fly-by-light/power-by-wire (FBL/PBW) program, a series of flight tests were conducted by NASA Langley Research Center in February, 1995. The NASA Boeing 757 was flown past known RF transmitters to measure both external and internal radiated fields. The aircraft was instrumented with strategically located sensors for acquiring data on shielding effectiveness and internal coupling. The data are intended to support computational and statistical modeling codes used to predict internal field levels of an electromagnetic environment (EME) on an aircraft. The hardware, instrumentation, and sensors, forged the basis of the data acquisition system. The configuration of the hardware provided for accurate measurements of the electromagnetic environment during flight. The system operated at several specified frequencies and modulation schemes. Internal and external EME data were recorded by the acquisition equipment and additional flight parameters were acquired from the aircraft's flight data bus. This paper describes the flight instrumentation system on board the aircraft and concentrates on the hardware components employed during the EME flight test. Measurement instrumentation, sensors, and aircraft configurations, are illustrated and discussed. Particular attention is given to design, operation, and use of the hardware. The actualized flight test scenarios are discussed to give broader scope of the experiment, design requirements and philosophy are examined to highlight the quality and the limitations of the system, and flight data is presented as a representative sample of experiment results.
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NASA EME飞行试验硬件部分的描述
为了支持NASA的光传/电传飞行(FBL/PBW)计划,NASA兰利研究中心在1995年2月进行了一系列的飞行试验。美国宇航局的波音757飞机飞过已知的射频发射机,测量外部和内部辐射场。飞机配备了战略位置的传感器,用于获取屏蔽有效性和内部耦合的数据。这些数据旨在支持用于预测飞机电磁环境(EME)内部场水平的计算和统计建模代码。硬件、仪表和传感器构成了数据采集系统的基础。硬件的配置为飞行中电磁环境的精确测量提供了条件。该系统在几个指定的频率和调制方案下工作。内部和外部电磁干扰数据由采集设备记录,额外的飞行参数从飞机的飞行数据总线获取。本文介绍了飞机上的飞行仪表系统,重点介绍了EME飞行试验中使用的硬件部件。测量仪器,传感器和飞机配置,说明和讨论。特别注意硬件的设计、操作和使用。讨论了实际的飞行测试场景,以提供更广泛的实验范围;审查了设计要求和理念,以突出系统的质量和局限性;并将飞行数据作为实验结果的代表性样本。
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