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A Simulation of Signal Collisions over the North Atlantic for a Spaceborne ADS-B Receiver Using Aloha Protocol

机译:使用Aloha协议的星载ADS-B接收器在北大西洋的信号碰撞仿真

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Automatic Dependent Surveillance-Broadcast (ADS-B) is an air traffic surveillance system in which aircraft broadcast GPS position, velocity and status on 1090 MHz at random intervals between 0.4 and 0.6 seconds. ADS-B networks for air traffic monitoring have been implemented worldwide, but ground stations cannot be installed in oceanic regions, leaving these areas uncovered. A solution for tracking aircraft over the ocean is through the monitoring of ADS-B signals by using spaceborne receivers. The Royal Military College of Canada has developed an ADS-B receiver that is scheduled to fly as a technology demonstrator on the Canadian Advanced Nanospace eXperiment-7 (CanX-7) nanosatellite. The payload will collect ADS-B data over the North Atlantic that will be compared to truth data provided by air traffic services. A potential issue for the CanX-7 payload is signal collisions. The extended footprint of the satellite coverage means that a large number of aircraft may be in view at any one time, leading to ADS-B messages that arrive simultaneously at the receiver not being decoded. A simulation of CanX-7 passage over the operations area was carried out to calculate the probability of signal collisions. Using the Aloha Protocol, it was determined that the loss of information as a result of signal collisions is well within the standards of ground based radars used by air traffic system agencies.
机译:自动相关监视广播(ADS-B)是一种空中交通监视系统,其中飞机以0.4至0.6秒的随机间隔在1090 MHz上广播GPS位置,速度和状态。用于空中交通监控的ADS-B网络已在全球范围内实施,但地面站无法安装在大洋地区,因此这些区域未被发现。跟踪飞机的一种解决方案是使用星载接收机监视ADS-B信号。加拿大皇家军事学院已经开发了一种ADS-B接收器,该接收器计划作为加拿大先进纳米空间eXperiment-7(CanX-7)纳米卫星的技术演示者飞行。有效载荷将收集北大西洋上空的ADS-B数据,并将其与空中交通服务提供的真实数据进行比较。 CanX-7有效载荷的潜在问题是信号冲突。卫星覆盖区的扩展覆盖范围意味着在任何时候都可以看到大量飞机,从而导致同时到达接收器的ADS-B消息未被解码。对CanX-7通过手术区域的通道进行了仿真,以计算信号碰撞的可能性。使用Aloha协议,可以确定由于信号冲突而造成的信息丢失完全在空中交通系统机构使用的地面雷达标准之内。

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