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Assessment of a small UAV speed polar graph by conducting flight tests

机译:通过进行飞行测试评估小型无人机速度极坐标图

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摘要

Purpose - The purpose of this paper is to present an approach to a polar graph measurement by a flight testing technique and to propose a baseline research method for future tests of UAV polar graphs. The method presented can be used to demonstrate a conceptual and preliminary design process using a scaled, unmanned configuration. This shows how results of experimental flight tests using a scaled flying airframe may be described and analysed before manufacturing the full scale aircraft. Design/methodology/approach - During the research, the flight tests were conducted for two aerodynamic configurations of a small UAV. This allowed the investigation of the influence of winglets and classic vertical stabilizers on the platform stability, performance and therefore polar graphs of a small unmanned aircraft. Findings - A methodology of flight tests for the assessment of a small UAVs polar graph has been proposed, performed and assessed. Two aerodynamic configurations were tested, and it was found that directional stability had a large influence on the UAVs performance. A correlation between the speed and inclination of the altitude graph was found - i.e. the higher the flight speed, the steeper the altitude graph (higher descent speed, steeper flight path angle). This could be considered as a basic verification that the recorded data have a physical sense. Practical implications - The polar graph and therefore glide ratio of the aircraft is a major factor for determining its performance and power required for flight. Using the right flight test procedure can speed-up the process of measuring glide ratio, making it easier, faster, robust, more effective and accurate in future research of novel, especially unorthodox configurations. This paper also can be useful for the proper selection of requirements and preliminary design parameters for making the design process more economically effective. Originality/value - This paper presents a very efficient method of assessing the design parameters of UAVs, especially the polar graph, in an early stage of the design process. Aircraft designers and producers have been widely performing flight testing for years. However, these procedures and practical customs are usually not wide spread and very often are treated as the company's "know how". Results presented in this paper are original, relatively easily be repeated and checked. They may be used either by professionals, highly motivated individuals and representatives of small companies or also by ambitious amateurs.
机译:目的-本文的目的是提出一种通过飞行测试技术进行极坐标图测量的方法,并提出一种用于未来的无人机极坐标图测试的基线研究方法。提出的方法可用于演示按比例缩放的无人配置的概念性和初步设计过程。这显示了在制造全尺寸飞机之前如何描述和分析使用比例飞行机身的实验飞行测试的结果。设计/方法/方法-在研究过程中,对小型无人机的两种空气动力学配置进行了飞行测试。这允许研究小翼和经典垂直稳定器对平台稳定性,性能以及小型无人飞机的极坐标图的影响。调查结果-已经提出,执行和评估了一种用于评估小型无人机极坐标图的飞行测试方法。测试了两种空气动力学配置,发现方向稳定性对无人机性能有很大影响。发现了高度图的速度和倾斜度之间的相关性-即,飞行速度越高,高度图越陡峭(下降速度越高,飞行路径角度越陡峭)。这可以被视为记录数据具有物理意义的基本验证。实际意义-飞机的极坐标图和因此的滑行率是确定其性能和飞行所需动力的主要因素。使用正确的飞行测试程序可以加快滑行率的测量过程,从而使其在未来对新颖(尤其是非正统)配置的研究中变得更加轻松,快速,强大,有效和准确。本文对于正确选择需求和初步设计参数也很有帮助,以使设计过程更加经济有效。原创性/价值-本文提出了一种非常有效的方法,可以在设计过程的早期阶段评估无人机的设计参数,尤其是极坐标图。飞机设计者和生产者多年来一直广泛进行飞行测试。但是,这些程序和实践习俗通常不会广泛传播,并且经常被视为公司的“诀窍”。本文介绍的结果是原始的,相对容易重复和检查。专业人士,积极进取的个人和小公司的代表都可以使用它们,但雄心勃勃的业余爱好者也可以使用它们。

著录项

  • 来源
    《Aircraft engineering》 |2019年第5期|720-727|共8页
  • 作者

  • 作者单位

    Faculty of Power and Aeronautical Engineering Warsaw University of Technology Warsaw Poland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Performance; Flight tests; UAV; Glide ratio; Polar graph;

    机译:性能;飞行测试;无人机滑行比;极坐标图;

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