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Méthodes et outils pour la conception optimale des réseaux de distribution d'électricité dans les aéronefs

机译:飞机配电网优化设计的方法和工具

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摘要

In the aeronautics field, the last decade has been marked by a constant and gradual increase of the electrification rate of the embedded systems. Today, the More Electric Aircraft (MEA) is seen as a major axis of improvement for the aviation industry to achieve increasingly ambitious objectives: reducing environmental impact, rationalisation of maintenance costs...In the more electrical aircraft concept, the electrical network plays a major role. Today engineers must imagine new architectural solutions to ensure the electricity supply while minimizing weight and cost. In this context, the PhD work consists in providing new methods to support the design of electrical network architectures. The PhD work is divided into 2 parts which can be seen as 2 separate studies which are introduced in the chapter 1.The 1st part, treated in the chapters 2 and 3, develops methods and tools to solve problems automatically for 2 architecture tasks: the definition of the network reconfiguration and the identification of the electrical load allocation on busbars. The formalization of these two issues highlights a common characteristic: the combinatorial explosion. As the consequence, methods from operational research area are selected to solve the 2 tasks in the frame of a general and consistent design process. The reconfiguration aspects are solved by a methodology coupling together: graph theory to model the network connectivity, an expert system capturing know-how rules and linear programming selecting the most efficient reconfiguration. The approach was successfully applied on existing aircraft electrical networks (A400M and A350) and on future architectures. The second task, related to the electrical load allocation, is solved using stochastic methods. The genetic algorithm using a niching method is the best assessed optimization method. It provides good and diversified load allocations to the electrical network architect. The 2nd part, treated in the chapter 4, focuses on a new technological concept the « modular and mutualised power electronics center ». This distribution system, closely linked to the more electrical aircraft, aims at sharing « m » power electronics modules to « c » electrical loads. The methods developed in this PhD aim at carrying out an optimal design of this new power center with 2 design variables: the number « m » of modules and the reconfigurations between the « m » modules and the « c » loads. Again, the formalization of the problem highlights that the designer must deal with a combinatorial explosion. The main objective of this study is to propose a methodological framework for solving this design problem. A heuristic-based algorithm is developed to solve this combinatorial optimization problem. A particular attention is paid to develop an organized weight estimation procedure using generic sizing models. Finally a mapping is performed to identify the best solutions and to highlight the technological elements having the most significant impact on the complete system weight
机译:在航空领域,过去十年的特点是嵌入式系统的电气化率不断提高。如今,更多电动飞机(MEA)被视为航空业实现日益雄心勃勃的目标的改进主轴:减少环境影响,合理化维护成本...在更多电动飞机概念中,电网起到了重要作用主角。如今,工程师们必须想像出新的建筑解决方案,以确保电力供应,同时最小化重量和成本。在这种情况下,博士工作包括提供新方法来支持电气网络体系结构的设计。博士学位工作分为两个部分,可以看作是在第1章中介绍的2个单独的研究。第1部分(在第2和第3章中进行了处理)开发了自动解决2个架构任务的方法和工具:网络重新配置的定义以及母线上的电负载分配的标识。这两个问题的形式化突出了一个共同的特征:组合爆炸。结果,从运筹学领域选择了方法,以在通用且一致的设计过程框架内解决这两个任务。通过将方法论结合在一起可以解决重新配置方面的问题:用图论对网络连通性进行建模;捕获专有技术规则的专家系统;以及选择最有效重新配置的线性编程。该方法已成功应用于现有飞机电气网络(A400M和A350)以及未来的体系结构。与电气负载分配有关的第二个任务是使用随机方法解决的。使用小生境方法的遗传算法是评估最好的优化方法。它为电网架构师提供了良好且多样化的负载分配。在第4章中处理的第二部分重点介绍了一个新的技术概念,即“模块化且相互关联的电力电子中心”。该配电系统与更多的电动飞机紧密相连,旨在将«m»个电力电子模块分配给«c»电气负载。在此博士中开发的方法旨在对具有两个设计变量的新电力中心进行最佳设计:模块数“ m”以及模块“ m”和负载“ c”之间的重新配置。同样,问题的形式化凸显了设计师必须应对组合爆炸。这项研究的主要目的是提出一个解决该设计问题的方法框架。开发了一种基于启发式的算法来解决此组合优化问题。要特别注意开发使用通用尺寸模型的有组织的重量估算程序。最后,执行映射以识别最佳解决方案,并突出显示对整个系统重量有最大影响的技术要素

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    Giraud Xavier;

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  • 年度 2014
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  • 正文语种 fr
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