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AUTOMATION METHODS OF AIRCRAFT WEIGHT ACTIVITIES

机译:飞机重量活动的自动化方法

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This paper presents the optimization and automation efforts for aircraft weight activities in aircraft design projects. Those weight activities involve monitoring the aircraft total weight and inertia, evaluation of weight breakdown and calculation of mass and inertia distribution. The results are then submitted to project management, flight mechanics, structural analyses and design groups. The methods and tools developed for this study provide less time-consuming process and more accurate results. The mass and inertia properties of the aircraft are subject to change progressively during an aircraft design process. The challenge is to monitor those changes and report their effects instantly. An integrated system is designed to make all those weight activities to be automatically performed and controlled. The system works simultaneously with Computer Aided Design (CAD) software and provides real time monitoring of weight properties and weight breakdown of aircraft. In addition, this system helps the weight data to be more accessible and updated. Also, mass and inertia distribution of aircraft is evaluated in this integrated system as the mass model, consisting of lumped masses, required from related analysis groups. The most common method for this mass distribution calculation is slicing functions of CAD software. However, the methods developed for the weight activities help overcome the inefficiencies of solely depending on CAD software for large assemblies consisting of thousands of detailed parts, sub-assemblies, equipments, harness, systems etc. These tools are designed to be used in all phases of the aircraft design process, from conceptual to detailed design. In conclusion, the integrated system developed for the automation of weight activities is mentioned and compared to common methods used in industry. The advantages and impact of those new methods and tools to aircraft design are presented.
机译:本文介绍了飞机设计项目中飞机重量活动的优化和自动化工作。这些重量活动包括监视飞机的总重量和惯性,评估重量破坏以及计算质量和惯性分布。然后将结果提交给项目管理,飞行力学,结构分析和设计小组。为这项研究开发的方法和工具可减少耗时的过程并获得更准确的结果。飞机的质量和惯性特性在飞机设计过程中会逐渐变化。面临的挑战是监视这些变化并立即报告其影响。设计了一个集成系统,以使所有这些举重活动都可以自动执行和控制。该系统与计算机辅助设计(CAD)软件同时工作,并提供对飞机重量特性和飞机重量分解的实时监控。此外,该系统还帮助重量数据更易于访问和更新。此外,在该集成系统中,将航空器的质量和惯性分布作为质量模型进行评估,该模型由相关分析组所需的集总质量组成。这种质量分布计算的最常用方法是CAD软件的切片功能。但是,为重量活动开发的方法有助于克服仅依靠CAD软件处理大型装配体(包括数千个详细零件,子装配体,设备,线束,系统等)的效率低下的问题。这些工具旨在用于所有阶段从概念设计到详细设计的飞机设计过程。总之,提到了为体重活动自动化而开发的集成系统,并将其与工业上常用的方法进行了比较。介绍了这些新方法和工具对飞机设计的优势和影响。

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