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首页> 外文期刊>Canadian Aeronautics and Space Journal >Hardware Simulator Models and Methodologies for Indoor Performance Assessment of High Sensitivity Global Positioning Satellite Receivers
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Hardware Simulator Models and Methodologies for Indoor Performance Assessment of High Sensitivity Global Positioning Satellite Receivers

机译:用于高灵敏度全球定位卫星接收器室内性能评估的硬件仿真器模型和方法

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摘要

High-sensitivity global positioning satellite (GPS)-enabled mobile telephones and personal digital assistants are being introduced for emergency-call location and location-based commercial services. Simulation of weak GPS signals received in various environments has been proposed as a cost-efficient method of verifying the positioning performance of such mobile telephones. Recent results have demonstrated both the success and limitations of weak-signal and multipath models implemented in an advanced GPS hardware simulator. In particular, the lack of variability of multipath delay, as a function of time, is suspected to be a major reason for the discrepancy between , simulator and field test results. This paper discusses how these model limitations have been addressed recently and demonstrates the improvement in the correlation between the simulator results and field test results. A high-sensitivity GPS receiver is used to collect data under two scenarios, near a building in an outdoor environment and inside a residence. These data are then used as a baseline to attempt to generate signals in the simulator that result in measurements with similar stochastic characteristics. An, analysis of the results in terms of fading and position demonstrates the viability of this approach to test receivers under controlled environments.
机译:正在引入具有高灵敏度全球定位卫星(GPS)的移动电话和个人数字助理,以用于紧急呼叫定位和基于位置的商业服务。已经提出了对在各种环境中接收到的微弱GPS信号进行仿真的方法,以作为一种经济有效的方法来验证此类移动电话的定位性能。最近的结果证明了在高级GPS硬件模拟器中实现的弱信号和多径模型的成功与局限。尤其是,多路径延迟随时间的变化缺乏可变性,被认为是模拟器与现场测试结果之间存在差异的主要原因。本文讨论了最近如何解决这些模型局限性,并演示了模拟器结果与现场测试结果之间相关性的改进。高灵敏度GPS接收器用于在两种情况下(室外环境中的建筑物附近和住宅内部)收集数据。然后将这些数据用作基线,以尝试在模拟器中生成信号,从而导致测量结果具有类似的随机特性。对结果的衰落和位置分析表明,这种方法在受控环境下测试接收机的可行性。

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