Urban Air Mobility

所在平台: Coursera

课程主页: https://www.coursera.org/learn/urban-air-mobility

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课程简介

课程名称:城市空中出行(Urban Air Mobility) 课程概述:本课程主要面向对航空领域新兴发展感兴趣的硕士及博士生,提供城市空中出行这一新兴领域的入门介绍。课程涵盖技术背景、空中交通管理、公众接受度、生态可持续性等多个方面,并将逐步扩展课程模块,添加新视频和测验。 课程大纲: 1. **引言 - 什么是城市空中出行?** - 介绍城市空中出行的各个定义要素,包括车辆设计、基础设施、空中交通管理、安全保障、可持续性、实际应用案例等。 2. **从行业视角看城市空中出行** - 讲述空中客车公司在城市空中出行方面的构想与设计,包括Vahana和CityAirbus的创意发展。 3. **政治视角** - 讨论德国在城市空中出行方面的政策和法律框架,包括无人机系统的行动计划和法律障碍。 4. **城市空中出行的需求建模** - 介绍需求建模的不同方法,以空中出租车服务需求预测为例,使用离散选择模型进行数据分析。 5. **航空管理** - 分析航空公司和机场在管理中面临的挑战,探讨解决方案和决策支持。 6. **城市空中出行的交通管理** - 研究城市空中出行的交通管理机制,探讨如何为城市环境设计合适的交通管理条件。 7. **城市空中出行与城市规划** - 探讨将垂直起降港口集成到城市规划中的挑战,包括公众接受度和负面影响的管理。 8. **理解城市空中出行的接受度** - 研究如何通过用户偏好和社会接受度研究城市空中出行的需求。 9. **航空出行轨迹规划** - 介绍航迹规划的基础知识,重点关注基础设施、社会接受度和空中交通管理等关键要素。 10. **城市空中出行的经济学** - 讨论电动垂直起降(eVTOL)车辆在城市空中出行中的市场可行性,包括成本、需求和融资条件的分析。 本课程旨在为学生提供一个全面的城市空中出行视角,并帮助他们理解其在航空业未来发展的潜力与挑战。

课程大纲

Name:Introduction - What is Urban Air Mobility?

Description:This first course module gives an overview of all aspects that define "Urban Air Mobility". It explains the concept of Urban Air Mobiltiy as well as all crucial factors, such as vehicle and power train design, infrastructure and vertiport design, air traffic management, the ensuring of safety and airworthiness, sustainability, use cases and concept of operations, city integration and ground transport connection and political support and public acceptance. - Dr Kay Plötner (Bauhaus Luftfahrt Munich).

Name:Urban Air Mobility from an Industry Perspective

Description:In five chapters, Dr. Markus May presents the approach to the topic of Urban Air Mobility from an industry perspective and shows the ideas of Airbus in this context. Dr. May describes the different design ideas that Airbus has developed with Vahana and the CityAirbus. It also explains how Airbus managed to create a creative workings space in a corporate environment.

Name:Political perspectives

Description:In this module, the Federal Ministry for Digital and Transport presents the national policies and the legal framework for Urban Air Mobility in Germany. The course also discusses the German Federal Government's action plan on "Unmanned Aircraft Systems and Innovative Aviation Concepts", as well as the digital platform “dipul” on unmanned aviation. The course will additionally focus on legal requirements, especially with regard to obstacles for the breakthrough of urban air mobility. The module concludes with an interview on what the future of urban air mobility will look like. // The course lecturers are Dr. Jan Dirks, Dipl.-Ing. Christoph Noack, Rahel Jünemann and Dr. Daniel Phiesel.

Name:Demand Modeling for Urban Air Mobility

Description:This course describes different approaches and data used to model travel demand. An introduction to discrete choice models is provided. An example of demand prediction for an air taxi commuting service is provided. The example uses a discrete choice model and location-based data from a telecommunications company to predict demand in the 40 largest cities in the U.S. /// Dr. Laurie Garrow is an expert in air travel behavior and market analysis. She is a Professor and Co-Director of the Center for Urban and Regional Air Mobility at Georgia Tech and owner of Atlanta Analytics. She has more than 20 years of experience in aviation and previously worked at United Airlines.

Name:Aviation Management

Description:Decision makers at airports and airlines face many challenges and require support to deal with these effectively and appropriately. This gives rise to a variety of difficult and interesting problems. This module looks at three big classes of problems and discusses applicable general solution approaches. // Maximilian Moll’s research focuses on reinforcement learning, one of the three areas in machine learning. His particular interest in this area are combinations with classical methods of operations research as well as application opportunities for prescriptive analytics. The latter pushes past predictive analytics in the sense that it does not only try to predict the future but also to suggest optimum actions to be taken now.He leads the research group “Data-Driven Aviation Management” at Munich Aerospace as well as the working group “Simulation and Optimization of Complex Systems” of the German Society for Operations Research.

Name:Traffic Management for Urban Air Mobility

Description:Dr. Bernd Korn (German Aerospace Center Braunschweig): This module is about understanding how traffic management for urban air mobility could work and what conditions need to be designed in an urban environment. A special focus is on the topics of the U-space in Europe, the design of vertidromes and the functioning of ground infrastructure. In addition, the module ventures a look into the future and describes possible traffic scenarios in our cities.

Name:Urban Air Mobility and Urban Planning

Description:Building safe and efficient Urban Air Mobility (UAM) vehicles is quite complex. It is equally challenging integrating vertiports required for UAM vehicles taking off and landing into the urban fabric. While it is possible to include vertiports in transport and land use planning processes, it is quite difficult finding suitable spaces in dense urban areas (where high demand is to be expected) and, at the same time, gaining public acceptance, reducing negative impact such as noise, negative visual effects and safety issues. This module explains the common transport and land use planning processes that are required for building UAM vertiports. Their integration into and competition with existing modes of transport is discussed as well. Inducing demand and simulation results are also explained. // Professor Rolf Moeckel, Associate Professor (Travel Behavior) at Technical University of Munich since 2021; Rudolf Mößbauer Professorship from September 2015 until August 2021; Post-Doctoral Research at National Center for Smart Growth/University of Maryland, USA from August 2013 until August 2015; Doctorate at Institute of Spatial Planning/University of Dortmund, Germany from Julie 2002 until September 2006 (awarded with the 2007 University Dissertation Prize); Diploma at Department of Spatial Planning/University of Dortmund, Germany from October 1998 until August 2000 and from August 2001 until June 2002; Fulbright Scholar (Visiting Graduate Student) at University of Washington/Seattle, USA from September 2000 until July 2001.

Name:Understanding the Acceptance of Urban Air Mobility

Description:This course covers a range of topics related to determining the demand for previously unavailable modes of transport, such as UAM. Collecting user preferences via the stated preference method and using the results of discrete choice models are some examples. User and societal acceptance are other aspects along with practical examples of ways to assess and interpret them. // Constantinos Antoniou is a Full Professor at the Chair of Transportation Systems Engineering at Technical University of Munich (TUM), Germany. He holds a Diploma in Civil Engineering from NTUA (1995), a MS in Transportation (1997) and a PhD in Transportation Systems (2004), both from MIT. His research focuses on modelling and optimization of transportation systems, data analytics and machine learning for transportation systems. He has a proven track record in attracting competitive funding, both on national and international levels as well as serving as PI for several research projects such as H2020 iDREAMS, MOMENTUM, Drive2thefuture, DFG DVanPool and Trampa. He has authored more than 400 scientific publications, including more than 150 papers in international, peer-reviewed journals as well as 250 publications relating to international conference proceedings, 3 books and has contributed to 20 book chapters.

Name:Air Mobility Trajectory Planning

Description:Professor Rodrigues from Concordia University in Montreal presents the basics of trajectory planning, also, he describes how infrastructure, social acceptance, sustainability, flight data and air traffic management, as well as the regulation and certification serve as most important pillars in air mobility. Besides important considerations, he looks at the system architecture and puts a special focus on various aspects such as flight management or trajectory without collisions.

Name:Economics of Urban Air Mobility

Description:For many decades Urban Air Mobility (UAM) has been addressed through the use of conventional helicopters. However, the emergence of eVTOL vehicles signals that UAM is on the verge of radical transformation regarding its scale of operation, mainly due to reduced noise pollution and an improved cost structure. This module discusses some of the economic conditions (cost, demand, finance) that must be met for market viability of eVTOL vehicles in passenger transportation networks. // Humberto Bettini is Professor at the University of São Paulo, Brazil. He is a B.S. and Ph.D. in Economics, and a M.Sc. in Transportation Engineering. He teaches Cost Accounting, Principles of Economics and Microeconomics, while his research concentrates on competitive and innovative aspects of air transportation and the airline industry.

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课程详情

Sneak preview: The course modules will be gradually expanded over the next few weeks and new videos and quizzes will be added to further expand the existing course. // This course is primarily aimed at master students and phd-candidates interested in exploring new fields in aerospace. The course gives a first introduction into the relatively new field of Urban Air Mobility, explaining the technical background as well a giving an overview of all other necessities such as air traffic management, public acceptance or ecological sustainability.

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