小型飞机内3G系统产生的电磁干扰图建模

Clifford De Raffaele, C. J. Debono
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引用次数: 1

摘要

客户对飞行期间类似办公室的通信服务的需求大幅增加,促使飞机制造商在飞机内实施无线解决方案。然而,飞机安全是操作人员的首要标准,因此必须仔细评估此类通信系统对飞机设备构成的潜在风险,并采取相应的对策。本文采用基于几何光学的三维光线追踪方法,结合电磁场计算对典型公务机客舱内3G蜂窝系统产生的干扰进行建模。该模型首先绘制出飞机内部节点B站发射的电磁(EM)辐射的传播图,以确定入射到个人电子设备(ped)接收天线上的功率。这用于确定每个PED所使用的传输功率。随后,为每个移动设备生成类似的传播映射。所有的无线电空间传播图,然后矢量组合,以产生在机身的电磁干扰图。
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Modeling of the electromagnetic interference map generated by 3G systems inside small aircraft
The substantial increase in customer demand for office-like communication services during flights is pushing aircraft manufactures to implement wireless solutions inside aircraft. Nevertheless, aircraft safety is a paramount criterion for operators, thus the potential risks posed by such communication systems on aircraft equipment must be carefully assessed and respective countermeasures taken. In this work, we adopt a three-dimensional ray tracing method based on geometrical optics and combine it with electromagnetic field computation to model the interference generated by a 3G cellular system inside the cabin of a typical business jet. The model initially develops a propagation map of the electromagnetic (EM) radiation emitted by the Node B station inside the aircraft to determine the power incident on the receiving antennas of personal electronic devices (PEDs). This is used to establish the transmission power employed by each PED. Subsequently similar propagation maps are generated for each mobile device. All the radio space propagation maps are then vectorially combined to produce an EM interference map at the fuselage.
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