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Formulation of a time-varying maximum allowable error for ground-based augmentation systems

机译:制定地面增强系统的时变最大允许误差

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摘要

Ground-based augmentation systems (GBAS), such as the federal aviation administration''s local area augmentation system (LAAS), protect GPS users against signal anomalies by monitoring for rare satellite faults. This paper introduces a new, time-varying MERR (maximum-allowable error in range) formulation that enables proof of integrity for ground-based fault monitoring. The time-varying MERR supersedes earlier MERR methods which relied on a static integrity test. The utility of these earlier methods was limited in that they neglected GBAS time-to-alert (TTA) requirements and restricted the choice of the monitor filter, requiring its impulse response to match that of the user ranging-error filter. By contrast, the time-varying MERR explicitly incorporates TTA and places no restrictions on monitor filter design. These attributes are critical for correctly evaluating system integrity and for crediting the integrity benefits of GBAS systems with aggressive filter designs and process timing.
机译:地面增强系统(GBAS),例如联邦航空局的局域增强系统(LAAS),可通过监视罕见的卫星故障来保护GPS用户免受信号异常的影响。本文介绍了一种新的时变MERR(范围内的最大允许误差)公式,该公式可以证明基于接地的故障监控的完整性。时变的MERR取代了之前的基于静态完整性测试的MERR方法。这些早期方法的实用性受到局限,因为它们忽略了GBAS的预警时间(TTA)要求,并限制了监控滤波器的选择,要求其冲激响应与用户测距误差滤波器的冲激响应相匹配。相比之下,时变MERR明确地包含了TTA,并且对监视器滤波器的设计没有任何限制。这些属性对于正确评估系统完整性以及通过积极的过滤器设计和处理时序为GBAS系统的完整性带来益处至关重要。

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