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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers >Fuel consumption minimization of transport aircraft using real-coded genetic algorithm
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Fuel consumption minimization of transport aircraft using real-coded genetic algorithm

机译:使用实编码遗传算法最小化运输机的油耗

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The issue of rising carbon dioxide emissions from aviation fuel consumption is increasingly crucial in terms of the Paris Agreement on climate change, which was adopted in 2015. The rapid growth of the global transport network has been affecting the environment adversely owing to the emission of greenhouse gases. Therefore, researchers are attempting to minimize aviation fuel consumption. This study presents a fuel consumption minimization problem in transport aircraft design. A real-coded genetic algorithm with direction-based crossover is employed to determine the optimum design for minimum fuel consumption. To mimic the aircraft fuel consumption issues, the proposed real-coded genetic algorithm employs the following three operators: ranking selection, direction-based crossover, and dynamic random mutation. Compared with earlier studies that used uniform crossover, the present study reduces the fuel consumption by applying real-coded genetic algorithm with a direction-based crossover operator. Comprehensive results show that the proposed real-coded genetic algorithm achieves remarkably faster convergence and improved search performance than the compared method. Direction-based crossover significantly enhances the fitness by guiding the crossover along a certain direction. In addition, it ensures a higher probability of locating the global optimum. Therefore, adopting such a technique can reduce the aircraft development cost.
机译:根据2015年通过的《关于气候变化的巴黎协定》,航空燃油消耗引起的二氧化碳排放量增加的问题日益重要。全球运输网络的快速增长由于温室气体的排放而对环境产生了不利影响。气体。因此,研究人员正试图将航空燃油消耗降至最低。这项研究提出了运输飞机设计中的油耗最小化问题。采用基于方向的交叉的实数编码遗传算法来确定最小油耗的最佳设计。为了模拟飞机的油耗问题,提出的实编码遗传算法采用以下三个运算符:排名选择,基于方向的交叉和动态随机突变。与使用均匀分频器的早期研究相比,本研究通过将实编码遗传算法与基于方向的分频算子相结合,降低了燃油消耗。综合结果表明,所提出的实编码遗传算法与比较方法相比,具有明显更快的收敛速度和改进的搜索性能。基于方向的交叉通过沿特定方向引导交叉显着提高了适应性。另外,它确保了找到全局最优值的较高可能性。因此,采用这种技术可以降低飞机的开发成本。

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