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Comparison of federated and centralized Kalman filters with fault detection considerations

机译:具有故障检测考虑的联邦和集中卡尔曼滤波器的比较

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This paper examines the results obtained by simulating an aircraft navigation system with a partial complement of a typical avionics sensor array using two different techniques of estimation processes: the conventional Kalman and the federated filter architectures. Areas of interest include error state estimation accuracy, residual behavior under induced sensor failure conditions, and potential for failure detection and isolation. Several simulations were accomplished for each filter design and the results were compared in order to verify the validity of the recently developed federated filter architecture. Comparison of the error state estimation accuracies of the two filter designs revealed excellent overall performances for both. The identification of failures showed a definite advantage in the federated filter design. Having sensor-dedicated local filters allowed for easy sensor failure identification for the federated filter, while the centralized filter design suffered from navigation solution corruption. Once established as a valuable estimation technique, the federated filter will add significantly to the viable alternatives when choosing a filter architecture for avionics modifications or implementations.
机译:本文通过模拟飞机导航系统使用两种不同的估计工艺技术模拟飞机导航系统来实现的结果:传统的Kalman和联合滤波器架构。感兴趣的领域包括误差状态估计精度,感应传感器故障条件下的残留行为,以及故障检测和隔离的可能性。为每个过滤器设计完成了几种模拟,并比较了结果,以验证最近开发的联邦过滤器架构的有效性。两个过滤器设计的误差状态估计精度的比较显示了两者的优异的整体性能。故障的识别在联邦过滤器设计中显示出明确的优势。具有传感器专用的本地滤波器允许为联合过滤器易于传感器故障识别,而中央滤波器设计遭受导航解决方案损坏。一旦建立为有价值的估计技术,联合滤波器将在为航空电子设备修改或实现选择过滤器架构时显着添加到可行的替代方案中。

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