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Failure management in spatio-temporal redundant, integrated navigation and flight control reference-systems

机译:时空冗余,集成导航和飞行控制参考系统中的故障管理

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摘要

Failure management techniques for highly reliable, fault-tolerant inertial reference systems are described. Cost, weight, and power considerations imply the use of a minimum number of inertial sensors in a skewed geometry. Fault-tolerant hardware performance is obtained by spatially separated channels with a preceptron-type information flow. Data diversity in temporally separated software channels yields software fault tolerance. Advanced vector space procedures for fault detection, localization, masking, and dynamic system reconfiguration permit safe and quick response, yielding minimal data and recovery latency.
机译:描述了用于高度可靠,容错的惯性参考系统的故障管理技术。成本,重量和功率方面的考虑意味着在倾斜的几何形状中使用最少数量的惯性传感器。容错硬件性能是通过在空间上分离开的具有感知器类型信息流的通道获得的。在时间上分开的软件通道中的数据多样性产生了软件的容错能力。用于故障检测,定位,屏蔽和动态系统重新配置的高级向量空间过程可实现安全,快速的响应,从而将数据和恢复延迟降至最低。

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