用可解释的数学模型判断驾驶员能否随时安全避让,提升行车安全性。
The Field of Safe Motion: Operationalizing Affordances in the Field of Safe Travel Using Reachability Analysis
- 基于可达性分析构建安全运动场,量化驾驶员避让能力。
- 结合道路使用者行为预测,提供可解释的安全评估框架。
- 适合自动驾驶与智能交通系统安全验证,易理解且假设少。
本文提出安全运动场(Field of Safe Motion, FSM),一种定量安全模型,用于判断驾驶员在任意时刻是否能保持无碰撞逃生路径,该模型综合考虑驾驶员自身物理能力及其它道路使用者的可预见行为。虽然安全旅行场(Field of Safe Travel, FST)自近90年前提出以来始终停留在概念层面,缺乏具体计算实现;而可达性分析虽能以可解释的运动学模型量化道路使用者可能行动,却长期局限于工程与机器人学领域。本研究将二者融合,构建出一种可解释、定量的驾驶行为评估工具,适用于多种驾驶场景。该方法仅依赖少量基本假设,易于枚举与推理,并通过可解释的运动学模型对道路使用者未来合理位置的不确定性进行边界约束。我们展示了该模型在不同驾驶场景中的适用性,并讨论了其优缺点。
原文摘要 · Abstract (English)
We present the Field of Safe Motion (FSM), a quantitative safety model for determining whether a driver maintains a collision-free escape route, or "out," at any given moment by accounting for that driver's physical capabilities and the foreseeable actions of other road users. The Field of Safe Travel (FST) provides a framework for representing the types of sensory information and actions available to drivers. However, the FST has remained conceptual in nature since its initial publication almost 90 years ago -- and a concrete computational operationalization is still lacking. At the same time, reachability analysis provides a quantitative basis for assessing the possible actions available to road users, using interpretable kinematic models, but reachability models have so far remained confined largely to the engineering and robotics literature. Bringing these two approaches together provides for an interpretable, quantitative tool for assessing driving behavior across a wide range of driving scenarios. Beyond being interpretable, our approach relies on a relatively small set of basic assumptions that are easy to enumerate and reason about. Furthermore, an interpretable reachability model paired with kinematic assumptions provides a way to bound uncertainty about road users' reasonably foreseeable future locations. We demonstrate the applicability of the FSM to different driving scenarios and discuss the strengths and weaknesses of the model.
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