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Optimal Weight Power System Design and Synthesis for More Electric Aircraft

机译:最佳的重量电力系统设计和合成更多电动机

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The synthesis of a power distribution architecture for More Electric Aircraft requires weight optimization in order to reduce energy consumption.The weight of an aircraft power distribution system depends on various factors such as the functional and safety requirements,as well as component selection and location.Functional and safety requirements can be translated into a set of connectivity and reliability constraints to produce an architecture that represents an abstract topology of the power system.However,component selection and location aims to produce a solution that is closer to a final implementation.Then,this paper presents an optimization based design formulation that synthesizes a power system architecture considering component selection and location in order to shorten the gap between the topology and the physical implementation.Given the complexity in producing and solving such formulation,linear transformations are performed to enable the use powerful commercial solvers and reach a minimum weight electrical distribution system.Therefore,the design is presented as a Mixed Integer Linear Programming problem and a case study is used to exemplify the synthesis of a power distribution architecture that is optimal.
机译:用于更多电气飞机的配电架构的合成需要重量优化,以减少能量消耗。飞机配电系统的重量取决于各种因素,如功能和安全要求,以及组件选择和位置。功能安全要求可以转化为一组连接性和可靠性约束,以产生代表电力系统的抽象拓扑的架构。无论何种,组件选择和位置都旨在生成更接近最终实现的解决方案。然后,这纸张提出了一种基于优化的设计配方,其考虑了组件选择和位置的电力系统架构,以缩短拓扑和物理实现之间的差距。使得在生产和解决这种配方中的复杂性,进行线性变换以实现使用强大的商业求解器a ND达到最小重量配电系统。因此,设计作为混合整数线性编程问题,案例研究用于举例说明优化的配电架构的合成。

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