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The Analytic Solutions to the Task of Maintaining the Specified Characteristics Stability in Aircraft Flight Control System Reconfiguration

机译:维持飞机飞行控制系统重新配置中规定特征稳定性的任务的分析解决方案

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The paper sets out the conceptual issues of methods of analytical solution of the problem of defined aircraft stability characteristics conservation during flight control system reconfiguration under actuating subsystem failure. It is shown that the use of the reconfiguration technique with analytic set of stabilizing control laws synthesized by the decomposition method taking into account the cross-linking between the control channels allows to fully compensate the effects of failures of the actuating subsystem in each of the control channels under the conditions of complete controllability of aircraft as a dynamic system. It thus makes it possible to reconfigure the flight control system that always ensures the stability of the motion of the aircraft with a precisely prescribed poles. During study of failures in the form of a gradual reduction of the effectiveness of control surfaces it found that the synthesized analytical control law is a corresponding automatic increase feedback gain serviceable channel actuating subsystem, as well as the reallocation of control signals between the drives within the existing cross-connections between the control channels. Some of the solutions obtained by reconfiguring the control laws are not satisfactory, because of significantly limited possibility of maneuvering.
机译:本文规定了在致动子系统故障下的飞行控制系统重新配置期间定义的飞机稳定性特性节约问题的分析解决方法的概念问题。结果表明,使用分解方法合成的分解技术与分解方法的使用进行了分解方法,考虑到控制信道之间的交联允许完全补偿致动子系统在每个控制中的故障的影响在飞机的完全可控性条件下作为动态系统的渠道。因此,可以重新配置始终确保飞行器的运动的稳定性与精确规定的极点来重新配置飞行控制系统。在逐步减少控制表面的有效性的形式的故障研究期间,它发现合成的分析控制法是相应的自动增加反馈增益可维修的信道致动子系统,以及在驱动器之间的控制信号的重新分配控制信道之间的现有交叉连接。通过重新配置控制法获得的一些解决方案并不令人满意,因为机动的可能性显着限制。

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