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Integrity Risk Minimisation in RAIM Part 1: Optimal Detector Design

机译:RAIM中的完整性风险最小化:最佳检测器设计

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This paper describes the first of a two-part research effort to find the optimal detector and estimator that minimise the integrity risk in Receiver Autonomous Integrity Monitoring (RAIM). In this first part, a new method is established to determine a piecewise linear approximation of the optimal detection region in parity space. The paper presents examples suggesting that the optimal detection boundary lays in between that obtained using chi-squared residual-based RAIM, and that provided by Solution Separation (SS) RAIM, as one varies the alert limit requirement. In addition, these examples indicate that for realistic navigation requirements, the SS RAIM method approaches the optimal detection region. The SS RAIM detection tests will be employed in the second part of this work, which focuses on the design of non-least-squares estimators to reduce the integrity risk in exchange for a slight increase in nominal positioning error.
机译:本文描述了一个由两部分组成的研究工作的第一部分,该工作旨在找到最佳的检测器和估计器,以使接收器自主完整性监控(RAIM)中的完整性风险降至最低。在第一部分中,建立了一种新方法来确定奇偶校验空间中最佳检测区域的分段线性逼近。本文提供了一些示例,这些示例建议最佳检测边界介于使用基于卡方残差的RAIM获得的检测边界和由解决方案分离(SS)RAIM提供的检测边界之间,因为这会改变警报极限要求。此外,这些示例表明,对于现实的导航要求,SS RAIM方法会接近最佳检测区域。 SS RAIM检测测试将在本工作的第二部分中进行,该测试的重点是非最小二乘估计器的设计,以降低完整性风险,以换取名义定位误差的稍微增加。

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