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Reliability-Centered Optimal Design Method for Flight Vehicle Control System

机译:可靠性的飞行车辆控制系统最优设计方法

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With the dominant emergence of hi-tech and the great diversification of flight vehicle's mission requirements, a more reliable control system is needed to face the complex missions and environment. To meet these requirements, a reliability-centered optimal design method for flight vehicle control system is put forward by integrating the reliability analysis into function and performance design. An air based flight vehicle is taken as an application example to illustrate the design method. The mission profile is firstly analyzed based on the mission requirements and the function demands are proposed as the design constraints. Based on this, the failure mode and effect analysis (FMEA) method is introduced and used to identify the weak links in the system. According to the result of FMEA, an improved design scheme is proposed and proved to be effective in practice. It illustrates that the reliability-centered optimal design method can effectively improve the reliability level of the flight vehicle while ensuring that the functions and performance meet the requirements.
机译:随着高科技和飞行车辆任务要求的巨大多样化的主导出现,需要更可靠的控制系统来面对复杂的任务和环境。为满足这些要求,通过将可靠性分析集成到功能和性能设计中,提出了一种可靠性的飞行车辆控制系统的最佳设计方法。作为应用示例,将基于空气的飞行车辆用于说明设计方法。首先根据任务要求分析任务简介,并提出了函数要求作为设计约束。基于此,引入了故障模式和效果分析(FMEA)方法并用于识别系统中的弱链路。根据FMEA的结果,提出了一种改进的设计方案,并证明在实践中有效。它说明了可靠性中心的最佳设计方法可以有效地提高飞行车辆的可靠性水平,同时确保功能和性能满足要求。

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