Automated vehicles (AV) heavily depend on robust perception systems. Current methods for evaluating vision systems focus mainly on frame-by-frame performance. Such evaluation methods appear to be inadequate in assessing the performance of a perception subsystem when used within an AV. In this paper, we present a logic -- referred to as Spatio-Temporal Perception Logic (STPL) -- which utilizes both spatial and temporal modalities. STPL enables reasoning over perception data using spatial and temporal relations. One major advantage of STPL is that it facilitates basic sanity checks on the real-time performance of the perception system, even without ground-truth data in some cases. We identify a fragment of STPL which is efficiently monitorable offline in polynomial time. Finally, we present a range of specifications for AV perception systems to highlight the types of requirements that can be expressed and analyzed through offline monitoring with STPL.
翻译:自动飞行器(AV)严重依赖稳健的感知系统。目前对视觉系统的评价方法主要侧重于框架性性能。这种评价方法似乎不足以在AV中使用时评估感知子系统的性能。在本文中,我们提出了一个逻辑 -- -- 称为Spatio-Teopal Pervition Loc(STPL) -- -- 使用空间和时间模式。STPL能够利用空间和时间关系对感知数据进行推理。STPL的一个主要优点是,它有利于对感知系统的实时性能进行基本的灵敏度检查,有时甚至没有地面真伪数据。我们发现了STPL的碎片,该碎片在多线性时间内可有效监测。最后,我们提出了AV感知系统的一系列规格,以突出可以通过STPL的离线监测来表达和分析的各种要求。