Understanding how camera configuration and environmental conditions affect appearance-based localization

Aayush Bansal, H. Badino, Daniel F. Huber
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引用次数: 27

Abstract

Localization is a central problem for intelligent vehicles. Visual localization can supplement or replace GPS-based localization approaches in situations where GPS is unavailable or inaccurate. Although visual localization has been demonstrated in a variety of algorithms and systems, the problem of how to best configure such a system remains largely an open question. Design choices, such as “where should the camera be placed?” and “how should it be oriented?” can have substantial effect on the cost and robustness of a fielded intelligent vehicle. This paper analyzes how different sensor configuration parameters and environmental conditions affect visual localization performance with the goal of understanding what causes certain configurations to perform better than others and providing general principles for configuring systems for visual localization. We ground the investigation using extensive field testing of a visual localization algorithm, and the data sets used for the analysis are made available for comparative evaluation.
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了解相机配置和环境条件如何影响基于外观的定位
定位是智能汽车的核心问题。在GPS不可用或不准确的情况下,视觉定位可以补充或取代基于GPS的定位方法。虽然视觉定位已经在各种算法和系统中得到了证明,但如何最好地配置这样一个系统的问题在很大程度上仍然是一个悬而未决的问题。设计选择,比如“相机应该放在哪里?”和“它应该如何定位?”会对现场智能车辆的成本和稳健性产生重大影响。本文分析了不同的传感器配置参数和环境条件对视觉定位性能的影响,目的是了解导致某些配置比其他配置表现更好的原因,并提供配置视觉定位系统的一般原则。我们使用视觉定位算法的广泛现场测试来进行调查,并提供用于分析的数据集用于比较评估。
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