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UPSET DETECTION FOR CLOSED-LOOP LABORATORY HIRF TESTING OF FAULT TOLERANT AIRCRAFT CONTROL COMPUTERS

机译:用于故障容错飞机控制计算机的闭环实验室高温测试的UPSET检测

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摘要

Future commercial aircraft will require flight-critical systems with high reliability requirements for stability augmentation, flutter suppression, and guidance and control. Verifying integrity of the control computer in adverse operating environments is a key issue in the development, certification, and operation of critical control systems.rnThis paper considers the problem of applying distributed detection techniques and decision fusion to monitoring the integrity of fault tolerant redundant control computers. A strategy is presented for monitoring a dynamic stochastic system for malfunctions or upsets during closed-loop laboratory testing for upset susceptibility due to HIRF. The monitoring strategy is demonstrated on a detailed simulation of the longitudinal control system of the B737 Autoland. The performance of the distributed monitoring system is assessed from glideslope engaged until flare.
机译:未来的商用飞机将需要对飞行至关重要的系统,这些系统对稳定性的增强,颤振抑制以及制导和控制有很高的可靠性要求。在不利的操作环境中验证控制计算机的完整性是关键控制系统的开发,认证和操作中的关键问题。本文考虑了应用分布式检测技术和决策融合来监视容错冗余控制计算机完整性的问题。 。提出了一种策略,用于在闭环实验室测试过程中监视动态随机系统的故障或异常,以防止由于HIRF引起的异常敏感性。通过对B737 Autoland的纵向控制系统进行详细的仿真演示了监控策略。分布式监控系统的性能是从滑翔到眩晕之前评估的。

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