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Cumulative interference to aircraft radios from multiple portable electronic devices

机译:多个便携式电子设备对飞机无线电的累积干扰

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Cumulative interference effects from portable electronic devices (PEDs) located inside a passenger cabin are conservatively estimated for aircraft radio receivers. PEDs' emission powers in an aircraft radio frequency band are first scaled according to their locations' interference path loss (IPL) values, and the results are summed to determine the total interference power. The multiple-equipment-factor (MEF) is determined by normalizing the result against the worst case contribution from a single device. Conservative assumptions were made and MEF calculations were performed for Boeing 737's Localizer, Glide-slope, Traffic Collision Avoidance System, and Very High Frequency Communication radio systems where full-aircraft IPL data were available. The results show MEF for the systems to vary between 10 and 14 dB. The same process was also used on the more popular window/door IPL data, and the comparison show the multiple-equipment-factor results came within one decibel (dB) of each other.
机译:对于飞机无线电接收机,保守地估计了位于客舱内的便携式电子设备(PED)的累积干扰效应。首先根据其位置的干扰路径损耗(IPL)值来缩放PED在飞机无线电频带中的发射功率,然后对结果求和以确定总干扰功率。多设备因子(MEF)通过针对单个设备的最坏情况贡献对结果进行归一化来确定。对波音737的Localizer,滑翔坡度,交通防撞系统和甚高频通信无线电系统进行了保守的假设并进行了MEF计算,这些飞机具有完整的飞机IPL数据。结果表明,系统的MEF在10至14 dB之间变化。在更流行的窗户/门IPL数据上也使用了相同的过程,并且比较结果显示,多设备因子的结果彼此之间相差1分贝(dB)。

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