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用于窄带信道室内传播损耗预测的测地线路径模型

Geodesic Path Model for Indoor Propagation Loss Prediction of Narrowband Channels.

作者信息

Kaya Abdil, De Beelde Brecht, Joseph Wout, Weyn Maarten, Berkvens Rafael

机构信息

IDLab-IMEC, Faculty of Applied Engineering, University of Antwerp, Sint-Pietersvliet 7, 2000 Antwerp, Belgium.

WAVES-IMEC, Department of Information Technology, Ghent University, Technologiepark-Zwijnaarde 126, 9052 Ghent, Belgium.

出版信息

Sensors (Basel). 2022 Jun 29;22(13):4903. doi: 10.3390/s22134903.

Abstract

Indoor path loss models characterize the attenuation of signals between a transmitting and receiving antenna for a certain frequency and type of environment. Their use ranges from network coverage planning to joint communication and sensing applications such as localization and crowd counting. The need for this proposed geodesic path model comes forth from attempts at path loss-based localization on ships, for which the traditional models do not yield satisfactory path loss predictions. In this work, we present a novel pathfinding-based path loss model, requiring only a simple binary floor map and transmitter locations as input. The approximated propagation path is determined using geodesics, which are constrained shortest distances within path-connected spaces. However, finding geodesic paths from one distinct path-connected space to another is done through a systematic process of choosing space connector points and concatenating parts of the geodesic path. We developed an accompanying tool and present its algorithm which automatically extracts model parameters such as the number of wall crossings on the direct path as well as on the geodesic path, path distance, and direction changes on the corners along the propagation path. Moreover, we validate our model against path loss measurements conducted in two distinct indoor environments using DASH-7 sensor networks operating at 868 MHz. The results are then compared to traditional floor-map-based models. Mean absolute errors as low as 4.79 dB and a standard deviation of the model error of 3.63 dB is achieved in a ship environment, almost half the values of the next best traditional model. Improvements in an office environment are more modest with a mean absolute error of 6.16 dB and a standard deviation of 4.55 dB.

摘要

室内路径损耗模型用于描述特定频率和环境类型下发射天线与接收天线之间信号的衰减情况。其应用范围涵盖网络覆盖规划以及联合通信与传感应用,如定位和人群计数。提出这种测地线路径模型的需求源于在船舶上基于路径损耗的定位尝试,而传统模型在这方面无法给出令人满意的路径损耗预测。在这项工作中,我们提出了一种基于路径寻找的新型路径损耗模型,该模型仅需简单的二进制楼层地图和发射机位置作为输入。近似传播路径通过测地线来确定,测地线是路径连通空间内的最短距离。然而,从一个不同的路径连通空间找到测地线路径是通过一个系统的过程来完成的,即选择空间连接点并连接测地线路径的各个部分。我们开发了一个配套工具并展示了其算法,该算法能自动提取模型参数,如直线路径以及测地线路径上的穿墙次数、路径距离和传播路径拐角处的方向变化。此外,我们使用工作在868MHz的DASH - 7传感器网络,针对在两个不同室内环境中进行的路径损耗测量对我们的模型进行了验证。然后将结果与传统的基于楼层地图的模型进行比较。在船舶环境中,平均绝对误差低至4.79dB,模型误差的标准差为3.63dB,几乎是次优传统模型值的一半。在办公室环境中的改进较为适度,平均绝对误差为6.16dB,标准差为4.55dB。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e0ce/9269714/96f94ed8c8e0/sensors-22-04903-g0A1.jpg

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