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A Conceptual Design Framework For Safety-Critical Drones

A Conceptual Design Framework For Safety-Critical Drones
安全关键型无人机的概念设计框架
批准号:
RGPIN-2022-05166
负责人:
Liscouet, Jonathan
金额:
$1.82万
依托单位:
依托单位国家:
加拿大
项目类别:
Discovery Grants Program - Individual
财政年份:
2022
资助国家:
加拿大
项目状态:
已结题
起止时间:
2022-01-01 至 2023-12-31

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中文摘要
翻译
拟议的研究计划将创建一个框架,用于开发新的概念设计方法,使设计师能够探索和评估无人机(UAV)设计和技术。主要的创新之处将是将安全和可靠性方面整合到设计和尺寸优化中,并提供先进的设计探索能力。背景无人机具有积极改变人们日常生活的潜力,其应用包括城市空中出租车、飞行救护车、在加拿大北部快速运送新冠肺炎疫苗、紧急运送除颤器和优化器官移植运输。这类应用涉及在视线之外操作,并在人口稠密地区对人进行操作,并且对安全至关重要。如果车辆与人、飞机或基础设施相撞,导致车辆失控的故障可能会导致灾难性的事故。另一个重大挑战是通过优化重量来实现高能效。由于电池的能量密度有限,新兴的全电动解决方案加剧了这一挑战。因此,针对安全关键应用的创新无人机的出现将取决于设计者探索和优化设计以实现能源效率、安全性和可靠性的能力。然而,目前最先进的无人机概念设计方法缺乏考虑安全性和可靠性,并允许探索设计和技术。科学方法拟议的计划将基于以下两个研究目标(ROS):-RO1将开发新的方法,以基于操作概念和适用的适航法规来定义相关的安全和可靠性要求。RO1还将开发新的方法,将操纵性评估整合到可靠性公式和计算中,并考虑飞行相变。-RO2将为无人机概念和替代能源系统开发新的估计和模拟模型,例如混合垂直起降(VTOL)固定翼概念和混合电力解决方案。这些模型将支持开发新的规模调整方法,这些方法将考虑冗余并允许探索设计。RO2还将开发新的方法,将故障案例整合到尺寸优化中。意义拟议的方案将有助于推进可靠性设计和多学科设计分析和优化领域。更具体地说,该计划将提供在无人机概念设计阶段做出最佳决策的有效手段。此外,该计划将培训具有一套新的安全关键型无人机设计技能的高素质人员(HQP)。这样,该项目将在竞争激烈的国际环境中为新兴的加拿大无人机行业提供战略优势。
英文摘要
The proposed research program will create a framework for developing new conceptual design methodologies that will provide designers with the capability to explore and evaluate unmanned aerial vehicle (UAV) designs and technologies. The main novelties will be integrating safety and reliability aspects into the design and sizing optimization and providing advanced design exploration capabilities. Background UAVs have the potential to positively change people's daily lives with applications such as urban air taxis, flying ambulances, fast delivery of Covid-19 vaccines in the Canadian North, emergency delivery of defibrillators and optimal transport of organ transplants. Such applications involve operating beyond the visual line of sight and over people in densely populated areas and are safety critical. Failures leading to an uncontrollable vehicle can cause catastrophic accidents if the vehicle collides with humans, aircraft, or infrastructure. Another major challenge is to achieve high energy efficiency by optimizing weight. The emerging fully electric solutions accentuate this challenge due to the limited energy density of the batteries. Hence, the emergence of innovative UAVs for safety-critical applications will depend on the designers' ability to explore and optimize designs for energy efficiency, safety, and reliability. However, the current state of the art lacks UAV conceptual design methodologies that take safety and reliability into account and allow exploration of designs and technologies. Scientific approach The proposed program will be based on the following two research objectives (ROs): - RO1 will develop new methodologies to define the relevant safety and reliability requirements based on a concept of operation and the applicable airworthiness regulations. RO1 will also develop new methodologies to integrate controllability assessment into reliability formulation and computation, taking into account flight phase transitions. - RO2 will develop new estimation and simulation models for UAV concepts and alternative energy systems such as hybrid vertical takeoff and landing (VTOL) fixed-wing concepts and hybrid electric-powered solutions. These models will enable the development of new sizing methodologies that will take redundancy into account and permit exploration of the design. RO2 will also develop new methodologies to integrate the failure cases in the sizing optimization. Significance The proposed program will contribute to advancing the fields of design for reliability and multidisciplinary design analysis and optimization. More specifically, the program will provide effective means to make optimal decisions in the conceptual design phase of UAVs. In addition, the program will train highly qualified personnel (HQP) with a new set of safety-critical drone design skills. This way, this program will provide a strategic advantage to the emerging Canadian drone industry in a very competitive international environment.
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A Conceptual Design Framework For Safety-Critical Drones
  • 批准号:
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  • 项目类别:
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  • 资助金额:
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  • 负责人:
    Liscouet, Jonathan
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