系统工程驱动的新型旋翼航空器适航理论与关键技术流程模型
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V37

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Systems Engineering-Driven Process Model for Airworthiness Theory and Critical Technologies in Advanced Rotorcraft
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    摘要:

    为助力新型旋翼航空器技术难点突破,推动其在民航领域的应用进程,通过系统工程方法建立了新型旋翼航空器适航理论与关键技术研究流程的输入-流程-输出(input-process-output, IPO)模型,并完成了模型中输入、使能项、控制项、活动与输出元素的定义生成与内容解读。结果表明:新型旋翼航空器的发展受到适航标准与技术限制的耦合作用,二者呈现协同演进的发展趋势。通过构建IPO模型可系统性解构适航要求与技术指标的映射关系,实现了对新型旋翼航空器适航与技术要求的信息归纳、综合处理与加工输出,可为新型旋翼航空器的概念发展提供参考。

    Abstract:

    To address technical challenges and accelerate civil aviation applications of advanced rotorcraft, a systems engineering approach was adopted. An Input-Process-Output (IPO) model was developed for airworthiness theory and critical technology research. Key elements including inputs, enablers, control factors, activities, and outputs were defined and systematically interpreted. The results demonstrate that the development of advanced rotorcraft is jointly constrained by airworthiness standards and technical limitations, which exhibit a co-evolutionary development trend. Through this approach, the mapping relationships between airworthiness requirements and technical specifications are deconstructed. The IPO model achieves integrated information processing and standardized output generation for airworthiness and technical requirements, providing actionable references for conceptual development of advanced rotorcraft systems.

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皮润格,赵嘉萌,曹义华,等. 系统工程驱动的新型旋翼航空器适航理论与关键技术流程模型[J]. 科学技术与工程, 2026, 26(13): 5755-5764.
Pi Runge, Zhao Jiameng, Cao Yihua, et al. Systems Engineering-Driven Process Model for Airworthiness Theory and Critical Technologies in Advanced Rotorcraft[J]. Science Technology and Engineering,2026,26(13):5755-5764.

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  • 收稿日期:2025-06-18
  • 最后修改日期:2026-04-20
  • 录用日期:2025-11-26
  • 在线发布日期: 2026-05-18
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