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Autonomous Lockout Map Construction Technique for Secondary Surveillance Radar Mode S network

机译:二次监视雷达S模式网络的自主封锁图构建技术

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Secondary Surveillance Radar (SSR) Mode S is an air traffic control radar system with improved surveillance and datalink capability. Recently, SSR mode S network attracts attentions as a way to solve problems such as the interrogator identifier code problem or radio frequency (RF) signal environment pollution. In SSR mode S network, each site has lockout map. Lockout is a command from GS to aircraft. Aircraft stops replying to all-call if it receives lockout. Lockout map determines area where GS lockout aircraft. There are several problems in current lockout map. First, it is difficult to create optimum lockout map. Second, it becomes complex to allocate and manage lockout maps if many sites join network. As the number of sites increase, Mode S operator has to prepare many maps. To solve these problems, we propose the Autonomous Lockout Map Construction Technique for SSR Mode S network. This technique enables Mode S GS to autonomously construct optimum lockout map by exchanging aircraft and site information through network. In this paper, we describe the background and details of the proposed technique. Then we show simulation results for validating the proposed technique.
机译:二级监视雷达(SSR)模式S是一种空中交通管制雷达系统,具有改进的监视和数据链接功能。近来,SSR模式S网络作为解决诸如询问器标识符代码问题或射频(RF)信号环境污染之类的问题的方法而引起人们的关注。在SSR模式S网络中,每个站点都有锁定映射。锁定是从GS到飞机的命令。如果飞机收到锁定,它将停止回复所有呼叫。锁定地图确定了GS锁定飞机所在的区域。当前的锁定图中存在几个问题。首先,很难创建最佳的锁定图。其次,如果许多站点加入网络,分配和管理锁定映射将变得很复杂。随着站点数量的增加,S模式操作员必须准备许多地图。为了解决这些问题,我们提出了SSR模式S网络的自主锁定图构造技术。该技术使S GS模式可以通过网络交换飞机和站点信息来自主构建最佳锁定地图。在本文中,我们描述了提出的技术的背景和细节。然后,我们给出了用于验证所提出技术的仿真结果。

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