引入自主无人机基础设施的机场设计分析

IF 1.6 Q3 MANAGEMENT
Facilities Pub Date : 2023-07-21 DOI:10.1108/f-11-2022-0146
H. Edelman, Joel Stenroos, J. Peña Queralta, David Hästbacka, Jani Oksanen, Tomi Westerlund, J. Röning
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引用次数: 0

摘要

目的将自主无人机连接到地面操作和服务是在建筑环境中采用可扩展和可持续的无人机服务的先决条件。尽管无人驾驶飞机领域进展迅速,但地面基础设施的发展却没有受到太多关注。现代机场设计为无人驾驶飞机服务的基础设施提供了潜在的解决方案。为此,本文旨在为无人驾驶飞机服务构建一个连接空中和地面行动的框架。此外,本文还定义了支持无人机进行自主物流和收集航空数据所需的最低设施。设计/方法/方法本文回顾了机场设计文献中的最新技术,作为分析适用于开发无人驾驶飞机地面基础设施的载人航空指南的基础。社会技术系统分析用于确定无人机的服务需求。发现关键发现是基于机场设计原则的功能模块化适用于微型机场,模块化服务功能可以以可持续的方式与自主地面处理系统有效连接,解决维护、可靠性和生命周期方面的问题。研究局限性/含义由于该研究仅限于机场设计文献的发现,解决方案的演变可能会提供支持偏离方法的特征。自主性和基于云的服务流程的作用与传统机场设计有着本质的不同,并可能影响作为未来研究领域的现实解决方案。实际意义本研究的结果为建立自主航空服务运营的空侧和陆侧之间的联系提供了一个框架。缺乏这种框架和地面基础设施阻碍了大规模采用和易于使用的可持续物流和空中数据收集解决方案,以便在建筑环境中进行决策。社会影响未来无人驾驶航空服务的发展应该向所有用户开放,使无人机的使用“民主化”。无人机收集的数据应符合保护数据隐私的使用要求。拟议的地面基础设施有助于卸载、存储和处理空中数据,以支持无人机服务的可接受性。独创性/价值据作者所知,本文描述了第一个基于全尺寸常规机场应用功能的无人航空模块化自主微型机场系统设计概念的设计框架。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of airport design for introducing infrastructure for autonomous drones
Purpose Connecting autonomous drones to ground operations and services is a prerequisite for the adoption of scalable and sustainable drone services in the built environment. Despite the rapid advance in the field of autonomous drones, the development of ground infrastructure has received less attention. Contemporary airport design offers potential solutions for the infrastructure serving autonomous drone services. To that end, this paper aims to construct a framework for connecting air and ground operations for autonomous drone services. Furthermore, the paper defines the minimum facilities needed to support unmanned aerial vehicles for autonomous logistics and the collection of aerial data. Design/methodology/approach The paper reviews the state-of-the-art in airport design literature as the basis for analysing the guidelines of manned aviation applicable to the development of ground infrastructure for autonomous drone services. Socio-technical system analysis was used for identifying the service needs of drones. Findings The key findings are functional modularity based on the principles of airport design applies to micro-airports and modular service functions can be connected efficiently with an autonomous ground handling system in a sustainable manner addressing the concerns on maintenance, reliability and lifecycle. Research limitations/implications As the study was limited to the airport design literature findings, the evolution of solutions may provide features supporting deviating approaches. The role of autonomy and cloud-based service processes are quintessentially different from the conventional airport design and are likely to impact real-life solutions as the area of future research. Practical implications The findings of this study provided a framework for establishing the connection between the airside and the landside for the operations of autonomous aerial services. The lack of such framework and ground infrastructure has hindered the large-scale adoption and easy-to-use solutions for sustainable logistics and aerial data collection for decision-making in the built environment. Social implications The evolution of future autonomous aerial services should be accessible to all users, “democratising” the use of drones. The data collected by drones should comply with the privacy-preserving use of the data. The proposed ground infrastructure can contribute to offloading, storing and handling aerial data to support drone services’ acceptability. Originality/value To the best of the authors’ knowledge, the paper describes the first design framework for creating a design concept for a modular and autonomous micro-airport system for unmanned aviation based on the applied functions of full-size conventional airports.
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来源期刊
Facilities
Facilities MANAGEMENT-
CiteScore
4.40
自引率
17.40%
发文量
46
期刊介绍: The journal offers thorough, independent and expert papers to inform relevant audiences of thinking and practice in the field, including topics such as: ■Intelligent buildings ■Post-occupancy evaluation (building evaluation) ■Relocation and change management ■Sick building syndrome ■Ergonomics and workplace design ■Environmental and workplace psychology ■Briefing, design and construction ■Energy consumption ■Quality initiatives ■Infrastructure management
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