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Performance analysis of a civilian GPS position authentication system

机译:民用GPS位置认证系统的性能分析

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A position authentication system utilizing the white noise like GPS spreading codes as tamper proof watermarks is described. Position authentication as used in this paper means the process of checking whether position reports made by a remote user are truthful and accurate. In the method proposed, a segment of the GPS signal collected by a trusted user (called the authenticator) is used as a template. Another user''s (called the supplicant) GPS signal is compared with the template to judge if the user''s position and time report is authentic. An analysis to explain how noise affects the watermark signal detection is presented. The paper also discusses an important implementation issue: Multiple false peaks caused by C/A power leakage which mask the detection of the watermark. Experimental results show that the authentication method proposed can detect deceptive position report and the resolution of the position authentication is at or better than 15 meters. This method may also be used in other GNSS system, for example Galileo, by utilizing the encrypted Public Regulated Service signal as the “watermark” signal.
机译:描述了一种利用诸如GPS扩展码之类的白噪声作为防篡改水印的位置认证系统。本文使用的位置认证是指检查远程用户发出的位置报告是否真实准确的过程。在提出的方法中,由受信任的用户(称为身份验证器)收集的GPS信号的一部分用作模板。将另一个用户(称为请求方)的GPS信号与模板进行比较,以判断该用户的位置和时间报告是否真实。进行了分析以解释噪声如何影响水印信号检测。本文还讨论了一个重要的实现问题:C / A功率泄漏引起的多个虚假峰掩盖了水印的检测。实验结果表明,所提出的认证方法能够检测到欺骗性的位置报告,位置认证的分辨率达到或优于15米。通过将加密的公共管制服务信号用作“水印”信号,该方法也可以用于其他GNSS系统(例如Galileo)中。

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