A Comprehensive and Systematic Literature Review on Flying Cars in Contemporary Research

سال انتشار: 1404
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 65

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شناسه ملی سند علمی:

JR_JACM-11-3_006

تاریخ نمایه سازی: 29 اردیبهشت 1404

چکیده مقاله:

The integration of flying cars into urban transportation represents a significant advance in scientific and technological developments. This paper provides a comprehensive review of flying cars within the context of Urban Aerial Mobility (UAM), addressing the critical need for Vertical Take-Off and Landing (VTOL) vehicles in contemporary urban environments. The study is divided into two main parts: a historical review and a systematic literature review. The historical review, which covers developments up to ۲۰۱۳, traces the evolution of flying cars from their conceptual inception to early practical implementations. From ۲۰۱۳ onwards, the focus shifted to a systematic literature review, which meticulously analyzes research from the past decade to the present day. This bifurcated approach not only highlights the technological and infrastructural advancements but also underscores the social considerations and regulatory frameworks necessary for the successful deployment of flying cars. The paper commences with a categorization of flying vehicles, which serves to establish a contextual understanding. The methodology employed in this study, namely the systematic literature review, is then described. An in-depth bibliometric analysis of the selected references follows this. The findings are presented through a conceptual structure map, which delineates the boundaries of the research field. The paper discusses a number of key issues, including technological innovations, infrastructure requirements, societal impacts, and regulatory challenges. In addition, the paper highlights the practical implications and recommendations for the successful integration and adoption of flying cars. Additionally, the paper compares various flying car concepts with each other in terms of several aspects and presents a preliminary sizing study of the selected flying car concept via a demonstrative example. Finally, the paper identifies promising avenues for future research in the field of vertical take-off and landing vehicles, with the aim of enhancing the framework for urban air mobility. This comprehensive review synthesizes existing knowledge and provides an integrative view essential for future research and development in flying cars.

کلیدواژه ها:

Urban Air Mobility (UAM) ، Air Transportation ، Flying Car ، Vertical Take-Off and Landing (VTOL) ، systematic literature review ، bibliometric analysis ، Aircraft Pre-dimensioning

نویسندگان

Carlos Pérez Carrera

Department of Industrial Engineering, University of Salerno, Via Giovanni Paolo II, ۱۳۲, ۸۴۰۸۴ Fisciano, Italy

Ömer Ekim Genel

Spin-Off MEID۴ s.r.l., University of Salerno, Via Giovanni Paolo II, ۱۳۲, ۸۴۰۸۴ Fisciano, Italy

Rosario La Regina

Spin-Off MEID۴ s.r.l., University of Salerno, Via Giovanni Paolo II, ۱۳۲, ۸۴۰۸۴ Fisciano, Italy

Carmine Maria Pappalardo

Department of Industrial Engineering, University of Salerno, Via Giovanni Paolo II, ۱۳۲, ۸۴۰۸۴ Fisciano, Italy

Domenico Guida

Department of Industrial Engineering, University of Salerno, Via Giovanni Paolo II, ۱۳۲, ۸۴۰۸۴ Fisciano, Italy

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  • Haug, E.J., Computer aided kinematics and dynamics of mechanical systems, ...
  • Kaiser, I., Strano, S., Terzo, M., Tordela, C., Anti-yaw damping ...
  • Marano, D., Cammarata, A., Fichera, G., Sinatra, R., Prati, D., ...
  • Shabana, A.A., Dynamics of multibody systems, Cambridge university press, ۲۰۲۰ ...
  • Kaiser, I., Strano, S., Terzo, M., Tordela, C., Estimation of ...
  • Razmjooei, H., Palli, G., Abdi, E., Terzo, M., Strano, S., ...
  • Cammarata, A., Sinatra, R., Rigato, R., Maddio, P.D., Tie-system calibration ...
  • Nikravesh, P.E., Computer-aided analysis of mechanical systems, Prentice-Hall, Inc., ۱۹۸۸ ...
  • Calabrese, A., Spizzuoco, M., Galano, S., Tran, N., Strano, S., ...
  • Cammarata, A., Sinatra, R., Rigano, A., Lombardo, M., Maddio, P.D., ...
  • Shabana, A.A., Computational continuum mechanics, John Wiley & Sons, ۲۰۱۸ ...
  • Calabrese, A., Quaglini, V., Strano, S., Terzo, M., Online estimation ...
  • Swaminathan, N., Reddy, S.R.P., RajaShekara, K., Haran, K.S., Flying cars ...
  • Rahman, N.A.A., Urban air transport and the future of tourism, ...
  • Straubinger, A., Rothfeld, R., Shamiyeh, M., Büchter, K.D., Kaiser, J., ...
  • Wang, L., Deng, X., Gui, J., Jiang, P., Zeng, F., ...
  • Coppola, P., De Fabiis, F., Silvestri, F., Urban air mobility ...
  • Garrow, L.A., German, B.J., Leonard, C.E., Urban air mobility: A ...
  • Radic, A., Quan, W., Ariza-Montes, A., Koo, B., Kim, J.J., ...
  • Cohen, A.P., Shaheen, S.A., Farrar, E.M., Urban air mobility: History, ...
  • Cummings, C., Mahmassani, H., Comparing urban air mobility network airspaces: ...
  • Jin, Z., Ng, K.K., Zhang, C., Robust optimisation for vertiport ...
  • Takacs, A., Haidegger, T., Infrastructural requirements and regulatory challenges of ...
  • Cokorilo, O., Urban air mobility: Safety challenges, volume ۴۵, ۲۰۲۰, ...
  • Ahmed, S.S., Hulme, K.F., Fountas, G., Eker, U., Benedyk, I.V., ...
  • Li, J., Cheng, H., Guo, H., Qiu, S., Survey on ...
  • He, X., Lv, C., Towards safe autonomous driving: Decision making ...
  • Pan, G., Alouini, M.S., Flying car transportation system: Advances, techniques, ...
  • Straubinger, A., Rothfeld, R., Shamiyeh, M., Büchter, K.D., Kaiser, J., ...
  • Rother, E.T., Systematic literature review x narrative review, Acta paulista ...
  • NASA, Uam reference vehicles – sacd, ۲۰۲۳ ...
  • Society, T.V.F., evtol aircraft directory, ۲۰۲۳ ...
  • Garrow, L.A., German, B.J., Leonard, C.E., Urban air mobility: A ...
  • Kiesewetter, L., Shakib, K.H., Singh, P., Rahman, M., Khandelwal, B., ...
  • A japanese “flying car” has successfully made its first test ...
  • B.V, P.V.I., Pal-v, ۲۰۱۸ ...
  • Creedy, S., Boeing ’flying car’ completes first test flight, ۲۰۱۹ ...
  • Courtney, W.S., You can buy the moller skycar flying car ...
  • Contributors, W., Terrafugia transition, ۲۰۱۹ ...
  • Johnson, W., Rotorcraft Aeromechanics, Cambridge Aerospace Series, Cambridge University Press, ...
  • Heathman, A., The pal-v liberty flying car is unveiled at ...
  • Pradeep, P.,Wei, P., Energy-efficient arrival with rta constraint for multirotor ...
  • Donateo, T., Ficarella, A., A modeling approach for the effect ...
  • Saberi, H., Hasbun, M., Hong, J., Yeo, H., Ormiston, R., ...
  • Shamiyeh, M., Rothfeld, R., Hornung, M., A performance benchmark of ...
  • Chauhan, S., Martins, J., Tilt-wing evtol takeoff trajectory optimization, Journal ...
  • Radotich, M.T., Conceptual Design of Two Tiltrotor Aircraft for Urban ...
  • Hall, E.J., Internal-combustion engine, ۱۹۱۹ ...
  • Elmore, E., Scata, D., ۲۰۲۰ redac -uam/uas acoustics research status ...
  • Terrafugia reveals new details on transition flying car due in ...
  • Rizzi, S.A., Urban Air Mobility Noise: Current Practice, Gaps, and ...
  • Rizzi, S., Rafaelof, M., Community noise assessment of urban air ...
  • Bian, H., Tan, Q., Zhong, S., Zhang, X., Assessment of ...
  • Mathur, A., Panesar, K., Kim, J., Atkins, E., Sarter, N., ...
  • Palli, G., Strano, S., Terzo, M., A novel adaptive-gain technique ...
  • Yang, X., Wei, P., Autonomous free flight operations in urban ...
  • Gandelli, E., Lomiento, G., Quaglini, V., Strano, S., Terzo, M., ...
  • Galano, S., Calabrese, A., Losanno, D., Serino, G., Strano, S., ...
  • Hang, E., Ehang | uam - passenger autonomous aerial vehicle ...
  • Aerofugia, Aerofugia aerofugia ...
  • Al Haddad, C., Chaniotakis, E., Straubinger, A., Plötner, K., Antoniou, ...
  • Aeromobil, ۲۰۱۹ ...
  • Rendón, M.A., Sánchez R., C.D., Gallo M., J., Anzai, A.H., ...
  • Aeronautics, U., Urban aeronautics | evtol | real flying cars ...
  • Sawday, J., Engines of the imagination: Renaissance culture and the ...
  • Ackroyd, J., Sir george cayley, the father of aeronautics. part ...
  • Ackroyd, J., Sir george cayley, the father of aeronautics part ...
  • Anderson, J.D., Fundamentals of aerodynamics, Mcgraw Hill Education, ۲۰۱۷ ...
  • Editors, H., Wright brothers, ۲۰۰۹ ...
  • Allen, J.E., Armstrong, F.W., Denning, R.M., Evolution of aviation and ...
  • Sinigaglia, T., Martins, M., Siluk, J., Technological evolution of internal ...
  • Upham, P., Maughan, J., Raper, D., Al, E., Towards sustainable ...
  • Rogers, E.W.E., Aerodynamics — retrospect and prospect, The Aeronautical Journal, ...
  • von Karman, T., The Wind and Beyond: Theodore Von Karman, ...
  • Prandtl, L., Theory of Lifting Surfaces, ۱۹۲۰ ...
  • Anderson, J., A history of aerodynamics: And its impact on ...
  • Goldstein, S., Fluid mechanics in the first half of this ...
  • Bissell, C., A History of Automatic Control, Springer Berlin Heidelberg, ...
  • Cierva c.۸, ۲۰۲۳ ...
  • Elliot, D., Rotary wing aircraft, ۱۹۳۸ ...
  • Stalker, E., Rotary wing aircraft, ۱۹۴۹ ...
  • Howard, R.W., Automatic flight controls in fixed wing aircraft–the first ...
  • Grum, J., Book review: Fundamentals of composites manufacturing, materials, methods ...
  • Ashkenazi, D., How aluminum changed the world: A metallurgical revolution ...
  • Soutis, C., Fibre reinforced composites in aircraft construction, Progress in ...
  • Marshall, D.M., Barnhart, R.K., Shappee, E., Most, M., Introduction to ...
  • Pavek, K., Albus, J., Messina, E., Autonomy levels for unmanned ...
  • Melvin, S., Gyroscopic apparatus, ۱۹۴۳ ...
  • Carlson, B., Automatic pilot, ۱۹۴۰ ...
  • Eduard, F., Johannes, T., Control apparatus for vehicles, ۱۹۴۰ ...
  • Choueiri, E.Y., A critical history of electric propulsion: The first ...
  • Sanghi, V., Lakshmanan, B., Sundararajan, V., Survey of advancements in ...
  • Moran, T.H., Mowery, D.C., Aerospace, Daedalus, ۱۲۰, ۱۹۹۱, ۱۳۵–۱۵۴ ...
  • Aspinwall, R.H., Baker, C.R., Jet propulsion, uS Patent ۴,۱۳۷,۷۰۸, ۱۹۷۹ ...
  • Lancaster, O.E., Jet propulsion engines, volume ۲۲۴۷, Princeton University Press, ...
  • Ballal, D.R., Zelina, J., Progress in aeroengine technology (۱۹۳۹–۲۰۰۳), Journal ...
  • Al-Lami, H., Aslam, A., Quigley, T., Lewis, J., Mercer, R., ...
  • Cousins, W.T., History, philosophy, physics, and future directions of aircraft ...
  • Engineering:ave mizar - handwiki ...
  • Lebouder autoplane, ۲۰۲۲ ...
  • Greene, D.L., Energy-efficiency improvement potential of commercial aircraft, Annual review ...
  • Chambers, J.R., Innovation in flight: research of the NASA Langley ...
  • Lee, J., Mo, J., Analysis of technological innovation and environmental ...
  • Kroo, I., Drag due to lift: concepts for prediction and ...
  • Cone, J.C.D., Minimum induced drag airfoil body, uS Patent ۳,۲۷۰,۹۸۸, ...
  • Prencipe, A., Breadth and depth of technological capabilities in cops: ...
  • Scott, A.J.,The aerospace-electronics industrial complex of southern california: The formative ...
  • Steinberg, R., Aircraft operating efficiency on the north atlantic, a ...
  • Valavanis, K.P., Advances in unmanned aerial vehicles: state of the ...
  • Asundi, A., Choi, A.Y., Fiber metal laminates: an advanced material ...
  • Vogelesang, L.B., Development of a new hybrid material (arall) for ...
  • Cooper, M.G., Elliott, E.M., Hartzell, D.A., Autopilot flight director system, ...
  • Ruffier, F., Franceschini, N., Optic flow regulation: the key to ...
  • Rauschelbach, P., Aircraft automatic flight control system, uS Patent ۳,۸۴۸,۸۳۳, ...
  • M. Sabri, M., Danapalasingam, K., Rahmat, M., A review on ...
  • Friedrich, C., Robertson, P.A., Hybrid-electric propulsion for aircraft, Journal of ...
  • Wheeler, P., Sirimanna, T.S., Bozhko, S., Haran, K.S., Electric/hybrid-electric aircraft ...
  • Fredericks, W.J., Moore, M.D., Busan, R.C., Benefits of hybrid-electric propulsion ...
  • Oosedo, A., Abiko, S., Konno, A., Koizumi, T., Furui, T., ...
  • Ahmad, S., Chipperfield, A., Tokhi, M., Dynamic modelling and optimal ...
  • Kraenzler, M., Schmitt, M., Stumpf, E., Conceptual design study on ...
  • Fumian, F., Di Giovanni, D., Martellucci, L., Rossi, R., Gaudio, ...
  • Silva, C., Johnson, W.R., Solis, E., Patterson, M.D., Antcliff, K.R., ...
  • Parveez, B., Kittur, M., Badruddin, I.A., Kamangar, S., Hussien, M., ...
  • Valavanis, K.P., Unmanned aircraft systems challenges in design for autonomy, ...
  • Nakagawa, S., Samarasinghe, G., Haddaway, N.R., Westgate, M.J., O’Dea, R.E., ...
  • Linnenluecke, M., Marrone, M., Singh, A., Conducting systematic literature reviews ...
  • Cook, D., Mulrow, C., Haynes, b., Systematic reviews: Synthesis of ...
  • Orlova, A., Titova, T., Analysis of the ‘dynamics of railway ...
  • D, T., Denyer, D., Smart, P., Towards a methodology for ...
  • Xiao, Y., Watson, M., Guidance on conducting a systematic literature ...
  • Moher, D., Liberati, A., Tetzlaff, J., Altman, D.G., Preferred reporting ...
  • Kasliwal, A., Furbush, N.J., Gawron, J.H., McBride, J.R., Wallington, T.J., ...
  • Rajashekara, K., Wang, Q., Matsuse, K., Challenges and propulsion strategies, ...
  • Postorino, M.N., Sarné, G.M., Reinventing mobility paradigms: Flying car scenarios ...
  • Ahmed, S.S., Fountas, G., Eker, U., Still, S.E., Anastasopoulos, P.C., ...
  • Luo, Y., Qian, Y., Zeng, Z., Zhang, Y., Simulation and ...
  • Shi, X., Yang, C., Jiayang, X., Liang, C., Chen, J., ...
  • Graydon et al supra note ۱۲۰ ...
  • Bacchini, A., Cestino, E., Electric vtol configurations comparison, Aerospace, ۶, ...
  • Eker, U., Fountas, G., Anastasopoulos, P.C., Still, S.E., An exploratory ...
  • Trancossi, M., Dumas, A., Madonia, M., Subhash, M., Pascoa, J., ...
  • Uber elevate ...
  • Abidin, A., Mansor, H., Ahmad, R., Abdullah, R., Chung, I., ...
  • Collareno, K., The flight path to transportation equity: How legislators ...
  • Stanley, M., Are flying cars preparing for takeoff?[۱۴۸] Ariffin, R.N.R., ...
  • Bansal, P., Kockelman, K.M., Singh, A., Assessing public opinions of ...
  • Manrique, C., Pappalardo, C., Guida, D., On the analytical and ...
  • Romano, L., Sakhnevych, A., Strano, S., Timpone, F., A hybrid ...
  • Genovese, A., Strano, S., Terzo, M., Design and multi-physics optimization ...
  • Siegel, S., Seidel, J., Cohen, K., McLaughlin, T., A cycloidal ...
  • Hanson, D.B., Compressible helicoidal surface theory for propeller aerodynamics and ...
  • Li, D., Design of a new vtol uav by combining ...
  • Shao, Y., Liu, L., Xu, Z., Design of four ducted ...
  • Trancossi, M., Hussain, M., Shivesh, S., Pascoa, J., A new ...
  • Reba, I., Applications of the coanda effect, Scientific American, ۲۱۴, ...
  • Mihara, Y., Nakamura, T., Nakamoto, A., Nakano, M., Airframe design ...
  • Shi, X., Kim, K., Rahili, S., Chung, S.J., Nonlinear control ...
  • Ai, T., Xu, B., Xiang, C., Fan, W., Zhang, Y., ...
  • Demirdžic􀀀, I., Peric􀀀, M., Finite volume method for prediction of ...
  • Gomi, R., Takii, A., Yamakawa, M., Asao, S., Takeuchi, S., ...
  • Takii, A., Gomi, R., Yamakawa, M., Tsubokura, M., Turning flight ...
  • Fresca, S., Manzoni, A., Pod-dl-rom: Enhancing deep learning-based reduced order ...
  • Peters, N., Silva, C., Ekaterinaris, J., A data-driven reduced-order model ...
  • Pardede, W.M., Adhitya, M., Take off and landing performance analysis ...
  • Liu, M., Hao, H., Lin, Z., He, X., Qian, Y., ...
  • Calabrese, A., Losanno, D., Barjani, A., Spizzuoco, M., Strano, S., ...
  • Calabrese, A., Gandelli, E., Quaglini, V., Strano, S., Terzo, M., ...
  • Romli, F.I., Yaakob, M.S., Personal air vehicle (pave) application in ...
  • Kish, B.A., Wilde, M., Silver, I., Wheeler, B., Cleveland, A., ...
  • Secanell, M., Wishart, J., Dobson, P., Computational design and optimization ...
  • Yang, C., Lu, Z., Wang, W., Wang, M., Zhao, J., ...
  • Prandini, M., Piroddi, L., Puechmorel, S., Brazdilova, S.L., Toward air ...
  • Mondoloni, S., Rozen, N., Aircraft trajectory prediction and synchronization for ...
  • Ghayouraneh, S., El-Ghazaly, S.M., Rankin, J.M., Dynamic addressing for on-demand ...
  • Saeed, N., Al-Naffouri, T.Y., Alouini, M.S., Wireless communication for flying ...
  • Alsamhi, S.H., Ansari, M.S., Ma, O., Almalki, F., Gupta, S.K., ...
  • Pu, C., Jamming-resilient multipath routing protocol for flying ad hoc ...
  • Guvenc, I., Koohifar, F., Singh, S., Sichitiu, M., Matolak, D., ...
  • Shane, S., Sanger, D.E., Drone crash in iran reveals secret ...
  • Humphreys, T., Statement on the vulnerability of civil unmanned aerial ...
  • Elakrat, M.A., Jung, J.C., Development of field programmable gate array–based ...
  • Wang, L., Wyglinski, A.M., Detection of man-in-the-middle attacks using physical ...
  • Europol, How can dos attacks paralyse the internet, ۲۰۱۸ ...
  • Kamkar, S., Skyjack, ۲۰۱۳ ...
  • Tewes, J., Cybersecurity as airworthiness, available at SSRN ۳۰۳۳۸۹۸ ...
  • Tang, A.C., A review on cybersecurity vulnerabilities for urban air ...
  • Ritchie, H., Roser, M., Rosado, P., Co۲ and greenhouse gas ...
  • Oertel, C., Matschullat, J., Zurba, K., Zimmermann, F., Erasmi, S., ...
  • Afonso, F., Ferreira, A., Ribeiro, I., Lau, F., Suleman, A., ...
  • Mudumba, S., Chao, H., Maheshwari, A., DeLaurentis, D., Crossley, W., ...
  • André, N., Sustainable design of electric vertical take-off and landing ...
  • Prakasha, P.S., et al., Urban air mobility vehicle and fleet-level ...
  • Zhang, T., Barakos, G.N., Furqan, Foster, M., High-fidelity aerodynamic and ...
  • Little, D.S., Majdalani, J., Hartfield, R.J., Ahuja, V., On the ...
  • Hara, S., Takahara, K., Mitsukura, Y., Stress evaluation using eeg ...
  • Glaab, P., Wieland, F., Santos, M., Sharma, R., Tamburro, R., ...
  • Ahmed, S.S., Fountas, G., Eker, U., Anastasopoulos, P.C., Are we ...
  • Birrell, S., Payre, W., Zdanowicz, K., Herriotts, P., Urban air ...
  • Yavas, V., Tez, Ö.Y., Consumer intention over upcoming utopia: Urban ...
  • Administration, F.A., Aeronautical information publication - aip, faa, accessed ۱۰ ...
  • Lascara, B., Lacher, A., DeGarmo, M., Maroney, D., Niles, R., ...
  • Raymer, D.P., French, J., Finger, D.F., Gomez, A., Singh, J., ...
  • Roskam, J., Airplane Design: Part V, Component Weight Estimation, Roskam ...
  • Fuentes, G., Ceron-Munoz, H., Parra, J., Design of an advanced ...
  • Benini, E., Significance of blade element theory in performance prediction ...
  • Mahmuddin, F., Rotor blade performance analysis with blade element momentum ...
  • Benini, E., Toffolo, A., Optimal design of horizontal-axis wind turbines ...
  • Ledoux, J., Riffo, S., Salomon, J., Analysis of the blade ...
  • Cavcar, M., Breguet range equation?, Journal of Aircraft - J ...
  • Hu, P., kan Chang, C., Research on optimize application of ...
  • Wang, Z., Huang, W., Yan, L., Multidisciplinary design optimization approach ...
  • Martins, J.R., Lambe, A.B., Multidisciplinary design optimization: a survey of ...
  • Comis Da Ronco, C., Ponza, R., Benini, E., Aerodynamic shape ...
  • Spalart, P.R., Venkatakrishnan, V., On the role and challenges of ...
  • Dong, Y., Tao, J., Zhang, Y., Lin, W., Ai, J., ...
  • Federal Aviation Administration, Federal aviation administration, https://www.faa.gov/, ۲۰۲۴ ...
  • European Union Aviation Safety Agency, Regulations, https://www.easa.europa.eu/en/regulations, ۲۰۲۴ ...
  • Allen, J.G., Coates, G., Trevelyan, J., A hyper-heuristic approach to ...
  • Sadraey, M., A systems engineering approach to unmanned aerial vehicle ...
  • Sadraey, M., Unmanned Aircraft Design: A Review of Fundamentals, ۲۰۱۷ ...
  • Desai, Y., Ali, J., Rhoades, C., Ayers, A., Madani, M., ...
  • Quan, Q., Introduction to multicopter design and control, Springer, ۲۰۱۷ ...
  • Cammarata, A., Pappalardo, C.M., On the use of component mode ...
  • Pappalardo, C.M., La Regina, R., Guida, D., Multibody modeling and ...
  • Pappalardo, C.M., Lök, S.I., Malgaca, L., Guida, D., Experimental modal ...
  • Ravindran, S.S., A reduced-order approach for optimal control of fluids ...
  • نمایش کامل مراجع