An Alternative Positioning Navigation and Timing concept based on Diverse Ranging

R. H. Wu, S. A. Davidson
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引用次数: 1

Abstract

An Alternative Positioning Navigation and Timing concept, called Diverse Ranging (DivR) is proposed for sustaining NextGen Performance Based Navigation and Automatic Dependent Surveillance - Broadcast during Global Navigation Satellite System outages. The system consists of a network of ground stations providing navigation signaling services to aircraft. The service is provided by using ground stations to selectively reply to the spontaneous broadcast messages of a small subset of aircraft. These new messages allow avionics to calculate positions in two modes - the Direct-Reply (DR) mode and Non-Reply (NR) mode. The DR mode is used by aircraft receiving addressed replies from the ground stations and is based on observed round-trip range measurements. The NR mode is used by aircraft receiving ground station replies that are addressed to other aircraft, and the processing is based on pseudorange and echoed pseudorange measurements. Timing signal broadcasts are also sent by the ground stations, which are synchronized using aircrafts' position broadcasts. The following analyses were conducted in order to characterize the performance of DivR: (1) nominal error overbounding and a preliminary Fault Modes and Effects Analysis, (2) initial integrity and continuity risk allocations based on Targeted Level of Safety Fault Tree Analysis, (3) theoretical derivations of the Navigation System Error (NSE) and Horizontal Protection Level (HPL) performance bounds, and (4) a terminal case study based on Washington Dulles International Airport for which the NSE, nominal-condition HPL, and spectrum impact were analyzed. The results show that DivR meets the required navigation accuracy and integrity requirements under nominal conditions for terminal operations in both low and high interference environments, with 99% availability and a 1-sec update interval. Further analyses are required to evaluate the performance under faulted conditions and evaluate time to alert and continuity performance. Timing service synchronization accuracy is expected to be sub-microsecond.
一种基于不同测距的可选定位导航与授时概念
提出了一种替代定位导航和授时概念,称为多样化测距(DivR),用于在全球导航卫星系统中断期间维持基于下一代性能的导航和自动相关监视广播。该系统由地面站网络组成,为飞机提供导航信号服务。这项服务是由地面站有选择地回复一小部分飞机的自发广播信息提供的。这些新信息允许航空电子设备在两种模式下计算位置-直接回复(DR)模式和非回复(NR)模式。DR模式用于飞机接收地面站的地址回复,基于观测到的往返距离测量。NR模式用于航空器接收地面站对其他航空器的应答,处理基于伪距和回波伪距测量。定时信号广播也由地面站发送,地面站使用飞机的位置广播进行同步。为了描述DivR的性能,我们进行了以下分析:(1)名义误差超限和初步故障模式及影响分析;(2)基于目标安全级别故障树分析的初始完整性和连续性风险分配;(3)导航系统误差(NSE)和水平防护级别(HPL)性能界限的理论推导;(4)基于华盛顿杜勒斯国际机场的终端案例研究,分析了NSE、名义条件HPL和频谱影响。结果表明,在低干扰和高干扰环境下,DivR满足终端操作标称条件下所需的导航精度和完整性要求,可用性为99%,更新间隔为1秒。需要进一步的分析来评估故障条件下的性能,评估警报时间和连续性性能。定时业务同步精度期望达到亚微秒级。
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