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Accuracy and Precision Assessment of AoA-Based Indoor Positioning Systems Using Infrastructure Lighting and a Position-Sensitive Detector

机译:基于基于基于AOA的室内定位系统使用基础设施照明和位置敏感探测器的准确性和精确评估

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摘要

Unlike GNSS-based outdoor positioning, there is no technological alternative for Indoor Positioning Systems (IPSs) that generally stands out from the others. In indoor contexts, the measurement technologies and localization strategies to be used depend strongly on the application requirements and are complementary to each other. In this work, we present an optical IPS based on a Position-Sensitive Detector (PSD) and exploiting illumination infrastructure to determine the target position by Angle of Arrival (AoA) measurements. We combine the proposed IPS with different positioning strategies depending on the number of visible emitters (one, two, or more) and available prior or additional information about the scenario and target. The accuracy and precision of the proposal is assessed experimentally for the different strategies in a 2.47 m high space covering approximately 2.2 m2, using high-end geodetic equipment to establish the reference ground truth. When the orientation of the target is known from external measurements, an average positioning error of 8.2 mm is obtained using the signal received from only one emitter. Using simultaneous observations from two emitters, an average positioning error of 9.4 mm is obtained without external information when the target movement is restricted to a plane. Conversely, if four signals are available, an average positioning error of 4.9 cm is demonstrated, yielding the complete 3D pose of the target free of any prior assumption or additional measurements. In all cases, a precision (2σ) better than 5.9 mm is achieved across the complete test space for an integration time of 10 ms. The proposed system represents a prospectively useful alternative for indoor positioning applications requiring fast and reliable cm-level accuracy with moderate cost when smart illumination infrastructure is available in the environment.
机译:与基于GNSS的户外定位不同,没有技术替代方案,用于室内定位系统(IPS)通常从其他系统中脱颖而出。在室内背景下,使用的测量技术和定位策略强烈依赖于应用要求,彼此互补。在这项工作中,我们基于位置敏感检测器(PSD)和利用照明基础设施来呈现光学IP,以通过到达角度(AOA)测量来确定目标位置。我们将所提出的IPS与不同的定位策略相结合,具体取决于可见发射器(一个,两个或更多)和有关场景和目标的可用的或附加信息。建议的准确性和精度是通过高端大地测量设备在2.47米高的高空间内进行的不同策略进行评估,以建立参考原理。当从外部测量中已知目标的取向时,使用从一个发射器接收的信号获得8.2mm的平均定位误差。使用来自两个发射器的同时观察,当目标移动限于平面时,在没有外部信息的情况下获得9.4mm的平均定位误差。相反,如果有四个信号可用,则对4.9cm的平均定位误差进行说明,从而不含任何先前假设或额外测量的目标的完整3D姿势。在所有情况下,在整个测试空间中实现了优于5.9毫米的精度(2σ),以实现10 ms的集成时间。所提出的系统代表了一个预期有用的替代方案,用于室内定位应用,需要快速可靠的CM级精度,当环境中提供智能照明基础设施时,具有中等成本。

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