巡航固定翼微型无人机性能优化研究

Q1 Earth and Planetary Sciences
Shahrooz Eftekhari, A. Al-Obaidi
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引用次数: 7

摘要

近几十年来,无人机的应用得到了扩展,它们被用于民用和军事应用。利用无人机用于民用目的的冲动已经提高了研究人员和行业对微型无人机(MUAV)类别的兴趣,因为它适合多学科民用目的的配置和能力。本研究旨在通过对机翼的参数化研究,提出一种创新的仿生机翼设计,进一步提高无人机的气动效率。采用数值模拟和实验验证相结合的方法进行了研究。通过本研究,可以更好地了解不同机翼参数对机翼和微型无人机气动性能的影响。设计、实现和评估了一种新的机翼结构。翅膀被命名为阿尔卑斯,因为它的灵感来自阿尔卑斯飞禽的仿生学。对新机翼几何形状的评估表明,与机翼面积相似的现有机翼相比,Alpine机翼几何形状的效率提高了35.9%。因此,实现了高山翼的气动效率优化,有助于提高无人机的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigation of a Cruising Fixed Wing Mini Unmanned Aerial Vehicle Performance Optimization
The applications of unmanned aerial vehicles have been extended through the recent decades and they are utilized for both civil and military applications. The urge to utilize unmanned aerial vehicles for civil purposes has elevated researchers and industries interest towards the mini unmanned aerial vehicle (MUAV) category due to its suitable configurations and capabilities for multidisciplinary civil purposes. This study is an effort to further enhance the aerodynamic efficiency of MUAVs through a parametric study of the wing and proposing an innovative bioinspired wing design. The research is conducted utilizing numerical simulation and experimental validation. This research provides a better understanding of different wing parameter(s) effect on the aerodynamic performance of the wing and mini unmanned aerial vehicles. A new wing configuration is designed, implemented and evaluated. The wing is named as Alpine since it is inspired by biomimicry of alpine swift bird. Evaluation of the new wing geometry shows that the Alpine wing geometry performs 35.9% more efficient compared to an existing wing with similar wing area. Hence, the aerodynamic efficiency optimization is achieved for the Alpine wing which helps to enhance the performance of MUAVs.
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来源期刊
Indonesian Journal of Science and Technology
Indonesian Journal of Science and Technology Engineering-Engineering (all)
CiteScore
11.20
自引率
0.00%
发文量
10
审稿时长
16 weeks
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