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Cavity to cavity coupling measurements in commercial aircraft and the implications for on-board operation of personal electronic devices

机译:商用飞机的腔对腔耦合测量及其对个人电子设备的机载操作的影响

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Characterization of the cavity electromagnetic environment and various coupling mechanisms to aircraft systems have been performed for internal emitters. One potential coupling mechanism is radiative coupling to wire bundles which then penetrate an electronic system enclosure as well as direct aperture coupling to the enclosure. This paper addresses the issue of cavity-to-cavity coupling or the electromagnetic environment in one cavity due to an emitter in another cavity. Cavity-to-cavity coupling needs to be considered since commercial aircraft design does not specifically provide for significant cavity isolation. The paper presents cavity-to cavity coupling data for two narrow body aircraft. The experimental approach and the resulting data are applicable to frequency regions where the cavities are multi-moded. Coupling data are provided from the passenger cabin to cockpit and avionics bay. An application of this information is to quantify the potential for electromagnetic interference from portable electronic devices which may be operated in the passenger cabin. Based on the measured cavity electromagnetic environment data, the paper provides a preliminary estimate of the relationships between the number and power output of portable electronic devices in the passenger cabin and the radiative environment levels expected in the cockpit or avionics bay.
机译:对于内部发射器,已经进行了腔电磁环境的表征以及与飞机系统的各种耦合机制。一种潜在的耦合机制是辐射耦合到线束,然后线束穿过电子系统外壳以及直接将孔径耦合到外壳。本文讨论了由于另一个腔体中的发射器而导致的腔体-腔体耦合或一个腔体中的电磁环境的问题。由于商用飞机的设计并未专门提供显着的空腔隔离,因此需要考虑空腔之间的耦合。本文介绍了两个窄体飞机的腔对腔耦合数据。实验方法和所得数据适用于腔是多模的频率区域。提供从客舱到驾驶舱和航空电子设备舱的耦合数据。该信息的应用是量化可能在乘客舱中操作的便携式电子设备产生电磁干扰的可能性。根据测得的空腔电磁环境数据,本文初步估算了客舱中便携式电子设备的数量和功率输出与驾驶舱或航空电子设备舱内辐射环境水平之间的关系。

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