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首页> 外文期刊>International Journal of Information Technology >Managing Uncertainty in Unmanned Aircraft System Safety Performance Requirements Compliance Process
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Managing Uncertainty in Unmanned Aircraft System Safety Performance Requirements Compliance Process

机译:管理无人机系统安全性能要求合规过程中的不确定性

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System Safety Regulations (SSR) are a central component to the airworthiness certification of Unmanned Aircraft Systems (UAS). There is significant debate on the setting of appropriate SSR for UAS. Putting this debate aside, the challenge lies in how to apply the system safety process to UAS, which lacks the data and operational heritage of conventionally piloted aircraft. The limited knowledge and lack of operational data result in uncertainty in the system safety assessment of UAS. This uncertainty can lead to incorrect compliance findings and the potential certification and operation of UAS that do not meet minimum safety performance requirements. The existing system safety assessment and compliance processes, as used for conventional piloted aviation, do not adequately account for the uncertainty, limiting the suitability of its application to UAS. This paper discusses the challenges of undertaking system safety assessments for UAS and presents current and envisaged research towards addressing these challenges. It aims to highlight the main advantages associated with adopting a risk based framework to the System Safety Performance Requirement (SSPR) compliance process that is capable of taking the uncertainty associated with each of the outputs of the system safety assessment process into consideration. Based on this study, it is made clear that developing a framework tailored to UAS, would allow for a more rational, transparent and systematic approach to decision making. This would reduce the need for conservative assumptions and take the risk posed by each UAS into consideration while determining its state of compliance to the SSR.
机译:系统安全法规(SSR)是无人飞机系统(UAS)适航性认证的重要组成部分。关于为UAS设置适当的SSR的争论很大。抛开这一争论,挑战在于如何将系统安全流程应用于UAS,而UAS缺乏常规驾驶飞机的数据和运营传统。有限的知识和操作数据的缺乏导致了UAS系统安全评估的不确定性。这种不确定性可能导致不正确的合规性发现以及潜在的UAS认证和操作不符合最低安全性能要求。传统的飞行员航空所使用的现有系统安全评估和合规流程无法充分考虑不确定性,从而限制了其在UAS上的适用性。本文讨论了对UAS进行系统安全评估的挑战,并提出了当前和设想中的研究来应对这些挑战。它旨在强调与在系统安全性能要求(SSPR)遵从过程中采用基于风险的框架相关的主要优点,该框架能够考虑与系统安全评估过程的每个输出相关的不确定性。根据这项研究,很明显,开发适合UAS的框架将允许采用更加理性,透明和系统的决策方法。这将减少对保守假设的需求,并在确定其符合SSR的状态时考虑每个UAS带来的风险。

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