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Network delay modeling for assisted GPS

机译:辅助GPS的网络延迟建模

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摘要

Currently, conventional Global Positioning System (GPS) receivers work well in open-sky environments. However, location finding in weak-signal conditions, such as urban canyons and indoors, is challenging and has been the subject of extensive research. Assisted GPS (A-GPS) is one of the concepts that helps receivers acquire weak signals by receiving assistance data from wireless networks, such as orbital parameters, and coarse time and location references. A-GPS also improves time-to-first-fix (TTFF) through faster delivery of information that is recovered from navigation data broadcast by GPS satellites. Receiver technology developers rely on signal simulators for testing real-world scenarios. While A-GPS support has been integrated in many simulators, probabilistic models of delays occurring during assistance data delivery have not been studied properly. This paper provides a methodology of A-GPS network delay modeling that is applicable to various simulation environments. Particularly, a testbed is designed to collect delay data, model them statistically and integrate the model in a simulator. The testbed employs secure user plane location (SUPL) architecture in two modes, mobile station (MS) based (MS-based) and MS-assisted, where data channels are used to communicate A-GPS assistance data.Measurement campaigns are conducted and network delay models are derived for various representative distances between assistance servers and receivers, and for various networks that users connect to, such as LAN, WLAN, third-generation mobile telecommunication (3G), high-speed downlink packet access (HSDPA), and fourth-generation long term evolution (4G LTE), with the Transmission Control Protocol and the Internet Protocol (TCP/IP) connection between a server and a receiver.
机译:当前,常规的全球定位系统(GPS)接收机在开阔的天空环境中工作良好。然而,在诸如城市峡谷和室内等弱信号条件下寻找位置是具有挑战性的,并且已经成为广泛研究的主题。辅助GPS(A-GPS)是通过从无线网络接收辅助数据(例如轨道参数,粗略的时间和位置参考)来帮助接收机获取微弱信号的概念之一。 A-GPS还可以通过更快地传递从GPS卫星广播的导航数据中恢复的信息来缩短首次定位时间(TTFF)。接收器技术开发人员依靠信号模拟器来测试实际场景。虽然A-GPS支持已集成到许多模拟器中,但尚未对辅助数据传递过程中出现的延迟概率模型进行适当的研究。本文提供了一种适用于各种仿真环境的A-GPS网络延迟建模方法。特别是,设计了一个测试平台来收集延迟数据,对其进行统计建模,并将模型集成到模拟器中。测试平台采用两种模式的安全用户平面定位(SUPL)体系结构,即基于移动站(MS)(基于MS)和MS辅助,其中数据通道用于传达A-GPS辅助数据。针对辅助服务器和接收器之间的各种代表性距离以及用户连接的各种网络(例如LAN,WLAN,第三代移动电信(3G),高速下行链路分组访问(HSDPA)和第四种)得出延迟模型服务器和接收器之间具有传输控制协议和Internet协议(TCP / IP)连接的下一代长期演进(4G LTE)。

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