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Artificial Landmarks for Trusted Localization of Autonomous Vehicles Based on Magnetic Sensors

机译:基于磁传感器的自动驾驶汽车可信赖定位的人工地标

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摘要

Magnetic sensors provide an advantageous alternative localization method, primarily focusing on localization in surroundings where GPS, other radio frequency-based, as well as optical localization do not work or has severe limitations. Suitable for distances in the meter range, such magnetic localization may in particular be useful as artificial landmarks, e.g., for automatic drift correction. To easily use such artificial landmarks, we propose an integration process based on Transducer Electronic Data Sheets. With this approach, the landmarks can be used by passing autonomous vehicles, e.g., UAVs, for re-orientation and re-calibration. During this process, all necessary information such as data formats, reference coordinates, calibration data, provider of the landmark etc. is made known to the vehicle passing by. Based on the provided so-called meta-information, the vehicle itself can decide whether and how to use the provided sensory information. To provide a certain level of trust in the landmarks and their provided information, the corresponding data sheets are certified using a digital signature.
机译:磁传感器提供了一种有利的替代定位方法,主要着眼于GPS,其他基于射频的定位以及光学定位无法工作或存在严重局限性的环境中的定位。这种磁定位适合于米范围内的距离,尤其可用作人工界标,例如用于自动漂移校正。为了轻松使用此类人工地标,我们提出了基于换能器电子数据表的集成过程。通过这种方法,地标可以通过诸如UAV的自动驾驶车辆用于重新定向和重新校准。在此过程中,所有必要的信息,例如数据格式,参考坐标,校准数据,路标提供者等,都将被经过的车辆告知。基于所提供的所谓的元信息,车辆本身可以决定是否以及如何使用所提供的感官信息。为了对地标及其提供的信息提供一定程度的信任,使用数字签名对相应的数据表进行了认证。

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