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The CanX-7 ADS-B Mission: Signal Propagation Assessment

机译:CanX-7 ADS-B任务:信号传播评估

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The CanX-7 Automatic Dependent Surveillance - Broadcast (ADS-B) nanosatellite mission collected more than four million ADS-B messages between October 2016 and April 2017. An analysis of data collected over the north Atlantic Ocean from 05 to 28 Oct included 20,707 position messages in which the angle from satellite nadir to aircraft was determined. The proximity of the received signal strength to the noise floor of the sensor allowed for an analysis of optimal aircraft-satellite orientation for ADS-B transmission detection. The results showed a significant disparity between descending and ascending passes of the satellite. For descending passes , the average nadir angle was 50.1 ° ?with 90% of the contacts greater than 40 ° . The ascending passes had an average nadir angle of 31.6 ° ?with only 24.8% of the contacts exceeding 40 ° . The evidence suggests that the satellite magnetic torquer may not have been fully aligned with the north magnetic pole as the satellite moved northward, resulting in ascending pass nadir angles that were not reflective of the full range of values. Further analysis of the descending passes showed agreement with an ADS-B signal propagation model with peak reception at nadir angles of 51 ° ?± 8 ° . For space-based ADS-B operations , the results support the replacement of the current aircraft upper quarter-wave monopole to an antenna that will transmit more energy directly above the airframe.
机译:2016年10月至2017年4月,CanX-7自动相关监视-广播(ADS-B)纳米卫星任务收集了超过400万条ADS-B消息。对北大西洋10月5日至28日收集的数据的分析包括20,707个位置确定从卫星最低点到飞机的角度的消息。接收信号强度接近传感器的本底噪声,可以分析用于ADS-B传输检测的最佳卫星卫星方位。结果表明,卫星的下降和上升通过之间有很大的差距。对于下降通道,平均最低点角为50.1°θ,其中90%的接触面大于40°。上升通道的平均最低点角为31.6°θ,只有24.8%的接触点超过40°。有证据表明,当卫星向北移动时,卫星磁力转矩器可能未与北极完全对准,导致上升的最低点角无法反映整个数值范围。对下降通道的进一步分析表明,它与ADS-B信号传播模型相一致,在最低点为51°±±8°时具有峰值接收。对于基于太空的ADS-B作战,结果支持将当前飞机的上四分之一波单极天线替换为天线,该天线将直接在机身上方传输更多能量。

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