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Impacts of safety on the design of light remotely-piloted helicopter flight control systems

机译:安全对轻型遥控直升机飞行控制系统设计的影响

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This paper deals with the architecture definition and the safety assessment of flight control systems for light remotely-piloted helicopters for civil applications. The methods and tools to be used for these activities are standardised for conventional piloted aircraft, while they are currently a matter of discussion in case of light remotely-piloted systems flying into unsegregated airspaces. Certification concerns are particularly problematic for aerial systems weighing from 20 to 150 kgf, since the airworthiness permission is granted by national authorities. The lack of specific requirements actually requires to analyse both the existing standards for military applications and the certification guidelines for civil systems, up to derive the adequate safety objectives. In this work, after a survey on applicable certification documents for the safety objectives definition, the most relevant functional failures of a light remotely-piloted helicopter are identified and analysed via Functional Hazard Assessment. Different architectures are then compared by means of Fault-Tree Analysis, highlighting the contributions to the safety level of the main elements of the flight control system (control computers, servoactuators, antenna) and providing basic guidelines on the required redundancy level. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文讨论了民用轻型遥控直升机的飞行控制系统的架构定义和安全评估。用于这些活动的方法和工具已针对常规飞行员飞机进行了标准化,而在轻型远程驾驶系统飞入未隔离空域的情况下,目前仍在讨论这些问题。对于重量在20到150 kgf的空中系统,认证方面的问题尤其严重,因为其适航性是由国家主管部门批准的。缺乏具体要求实际上需要分析现有的军事应用标准和民用系统认证准则,以得出足够的安全目标。在这项工作中,在对适用于安全目标定义的适用证明文件进行调查之后,通过功能危害评估确定并分析了轻型遥控飞机最相关的功能故障。然后通过故障树分析比较不同的体系结构,突出显示对飞行控制系统主要元件(控制计算机,伺服执行器,天线)的安全级别的贡献,并提供所需冗余级别的基本准则。 (C)2016 Elsevier Ltd.保留所有权利。

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