Prediction of Fixing of RTK-GNSS Positioning in Multipath Environment Using Radiowave Propagation Simulation

R. Furukawa, N. Kubo
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引用次数: 2

Abstract

あらまし 衛星測位の RTK-GNSSなどの高精度測位における FIX 解の算出状況は,実施地点における衛星配置,衛星数,観 測情報の品質と測位アルゴリズムに依存する.衛星配置は航法メッセージにより推定することが可能であり,可視衛星数と観 測情報の品質は,周辺の建物などによる信号の遮蔽,反射およびアンテナ・受信機の性能を考慮し,シミュレーションにより 推定することが可能である.本研究では衛星測位における観測情報の品質を,3D建物モデルを用いたシミュレーションにより 予測し,実際の観測情報との比較を行った.また,高精度測位を実施した結果と比較し,シミュレーションによる RTK-GNSS 測位の FIX状況予測の可能性を検討した. Abstract The Fixing of RTK-GNSS satellite positioning depends on the satellites' position, number of visible satellites, signal quality and positioning algorithm. The satellites' position can be calculated from the navigation messages, while the number of visible satellites and signal quality can be predicted using simulations taking into consideration the multipath from surrounding buildings, antenna and receiver performance. In this paper, the signal quality is predicted using simulations with 3D buildings and compared with measured data. Furthermore, simulated and measured RTK-GNSS positioning from signal quality are compared to evaluate the possibility of using 3D buildings to predict the Fixing status of RTK-GNSS Positioning. The evaluation gives reasonable comparable results.
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基于无线电波传播仿真的多径环境下RTK-GNSS定位定位预测
卫星定位的RTK-GNSS等高精度定位中FIX解的计算情况主要取决于实施地点的卫星配置、卫星数量、观测信息的质量和定位算法。卫星布局可通过导航消息进行估计,可视卫星数量和观测信息质量可通过模拟计算,考虑到周围建筑物等对信号的遮挡、反射和天线接收机的性能可以估计。本研究利用3d建筑物模型模拟预测了卫星定位观测信息的质量,并与实际观测信息进行了比较,还与高精度定位结果进行了比较,并与模拟进行了比较。研究了RTK-GNSS定位FIX状况预测的可能性。Abstract The Fixing of RTK-GNSS satellite positioning depends on Thesatellites' position, number of visible satellites,signal quality and positioning algorithm. The satellites' position can be calculated from Thenavigation messages,while the number of visible satellites and signal quality can be predicted using simulations takinginto consideration the multipath from surrounding buildings,antenna and receiver performance. In this paper,the signal quality is predicted using simulations with 3d buildings and compared with measured data。furthermore,simulated and measured RTK-GNSS positioning from signal quality are compared to evaluate thepossibility of using 3d buildings to predict the Fixing status of RTK-GNSS Positioning. theevaluation gives reasonable comparable results。
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