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Hierarchical Weight Optimization Design of Aircraft Power Electronics Systems Using Metaheuristic Optimization Methods

机译:采用地图式优化方法的飞机电力系统的分层重量优化设计

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In the background of the development of More Electric Aircraft (MEA) framework, weight-optimized design of an aircraft's electric power system is essential. Power electronics systems have played an important role in the on board power distribution system. However, the difficulties in its design variable identification and the design interaction decoupling process have been primary obstacles to design the electric power system in an optimized and efficient manner. In this paper, a hierarchical weight optimization design procedure has been applied to solve this problem. To accelerate the design iterations, metaheuristic optimization methods, such as genetic algorithm (GA), particle swarm optimization (PSO), and simulated annealing (SA) are considered due to the nonlinear and discrete nature of power electronics converters. Finally, a design example of a 2 kW voltage source inverter (VSI) is shown to illustrate the hierarchical optimization design process using metaheuristic optimization methods.
机译:在更多电机(MEA)框架的发展背景下,飞机的电力系统的体重优化设计至关重要。电力电子系统在船上配电系统中发挥了重要作用。然而,其设计变量识别和设计相互作用去耦过程的困难是以优化和有效的方式设计电力系统的主要障碍。在本文中,应用了分层权重优化设计程序来解决这个问题。为了加速设计迭代,由于电力电子转换器的非线性和离散性,因此考虑了遗传算法(GA),粒子群优化优化(PSO)和模拟退火(SA),例如遗传算法(GA),粒子群优化优化(SA)。最后,示出了2 kW电压源逆变器(VSI)的设计示例,示出了使用成逐型优化方法的分层优化设计过程。

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