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Measurement and Modeling of Network Delays for MS-Based A-GPS Assistance Delivery

机译:基于MS的A-GPS辅助传送的网络延迟的测量和建模

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摘要

While conventional global positioning system (GPS) receivers have gained popularity for applications in open-sky environments, their performance degrades in challenging conditions, such as urban canyons and indoors. The assisted GPS (A-GPS) concept enhanced receiver capability to operate in weak signal conditions using terrestrial links to communicate helpful information such as satellite orbital parameters, coarse estimates of time and location, and so forth. The A-GPS mode has been standardized for many wireless networks and is integrated in high-end simulators to support development and testing efforts. As the terrestrial-assistance data channel becomes an important link for the receiver, the statistical modeling of information delivery delays should be addressed to simulate more adequate operation scenarios. This paper addresses this aspect by presenting a delay measurement and modeling approach for Mobile Station Based assistance data. Even though the approach can be applied to other measurement setups, this paper is presented for standardized secure user plane location architecture that exploits data channels of wireless networks to deliver assistance data. Measurement data are collected and modeled for various scenarios of relative deployment of assistance servers and receivers. Delays are modeled for LAN, WLAN, third-generation mobile telecommunication, high-speed downlink packet access, and fourth-generation long-term evolution networks, with the transmission control protocol and the Internet protocol connection between a server and receiver.
机译:尽管常规的全球定位系统(GPS)接收器在开阔天空环境中的应用中已广受欢迎,但在恶劣的条件下(如城市峡谷和室内),其性能会下降。辅助GPS(A-GPS)概念增强了接收机的能力,可以使用地面链路在弱信号条件下运行,以传达有用的信息,例如卫星轨道参数,时间和位置的粗略估计等。 A-GPS模式已针对许多无线网络进行了标准化,并集成在高端模拟器中以支持开发和测试工作。随着地面辅助数据信道成为接收器的重要链接,信息传送延迟的统计模型应得到解决,以模拟更适当的操作方案。本文通过介绍基于移动台的辅助数据的延迟测量和建模方法来解决这一方面。即使该方法可以应用于其他测量设置,本文还是针对标准化的安全用户平面位置架构进行了介绍,该架构利用无线网络的数据通道来传递辅助数据。针对辅助服务器和接收器的相对部署的各种场景,收集和建模测量数据。通过LAN,WLAN,第三代移动电信,高速下行链路分组访问和第四代长期演进网络对延迟进行建模,并在服务器和接收器之间建立传输控制协议和Internet协议连接。

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