Asymptotic fault-tolerant fusion algorithm based on P-value mapping for multi-sensors navigation

Rong Wang, Zhi Xiong, Jianye Liu, Rongbing Li, Yuxuan Cao
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引用次数: 2

Abstract

The fault tolerance capacity of fusion algorithm is critical for the robustness and stability of multi-sensors navigation system in failure. In traditional fault-tolerant fusion algorithm, the fault subsystem is isolated entirely on the fault- detected epoch. This strategy ignored the asymptotic changing and components difference of soft failure influence. In this paper, an asymptotic fault-tolerant fusion algorithm based on P-value mapping is proposed for multi-sensors navigation. The failure influence mapped on local estimation components is modelled. Then quality of local estimation influenced by soft failure is evaluated according to P-value theory. The estimated quality values of local estimations are used as reference for fault-tolerant tuning in global fusion. Simulations of INS/GPS/SAR integrated navigation using the traditional federal filter and the proposed fault-tolerant algorithm are carried out. The simulation results indicate that the fault-tolerant performance under soft failure is improved significantly by using proposed algorithm.
基于p值映射的多传感器导航渐近容错融合算法
融合算法的容错能力对多传感器导航系统的鲁棒性和稳定性至关重要。在传统的容错融合算法中,故障子系统在故障检测历元上被完全隔离。该策略忽略了软破坏影响的渐近变化和分量差异。提出了一种基于p值映射的多传感器导航渐近容错融合算法。对映射到局部估计分量上的故障影响进行了建模。然后根据p值理论对软失效影响下的局部估计质量进行了评价。将局部估计的质量值作为全局融合中容错调优的参考。利用传统的联邦滤波器和提出的容错算法对INS/GPS/SAR组合导航进行了仿真。仿真结果表明,该算法显著提高了系统在软故障下的容错性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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