IMPLEMENTATION OF OPTIMUM ADDITIVE TECHNOLOGIES DESIGN FOR UNMANNED AERIAL VEHICLE TAKE-OFF WEIGHT INCREASE
暂无分享,去创建一个
Sven Maričić | Ivana Palunko | Ivan Veljovic | Iva Mrsa Haber | I. Palunko | S. Maricic | Ivan Veljović | Sven Maricic | Ivana Palunko
[1] Massimiliano Ruffo,et al. Rapid manufacturing facilitated customization , 2008, Int. J. Comput. Integr. Manuf..
[2] John K Borchardt. Unmanned aerial vehicles spur composites use , 2004 .
[3] Jian Zhang,et al. Seeing the forest from drones: Testing the potential of lightweight drones as a tool for long-term forest monitoring , 2016 .
[4] Jean-Yves Hascoët,et al. A novel methodology of design for Additive Manufacturing applied to Additive Laser Manufacturing process , 2014 .
[5] Paolo Maggiore,et al. Additive Manufacturing Offers New Opportunities in UAV Research , 2016 .
[6] Timothy J Horn,et al. Overview of Current Additive Manufacturing Technologies and Selected Applications , 2012, Science progress.
[7] Surya P. N. Singh,et al. Integrated electro-aeromechanical structures for low-cost, self-deploying environment sensors and disposable UAVs , 2013, 2013 IEEE International Conference on Robotics and Automation.
[8] W. Grodzki,et al. Design and manufacture of umanned aerial vehicles (UAV) wing structure using composite materials , 2015 .
[9] Constantinos Soutis,et al. Fibre reinforced composites in aircraft construction , 2005 .
[10] Giovanna Jona Lasinio,et al. A low-cost drone based application for identifying and mapping of coastal fish nursery grounds , 2016 .
[11] Qingqing Wu,et al. Fundamental Trade-offs in Communication and Trajectory Design for UAV-Enabled Wireless Network , 2018, IEEE Wireless Communications.
[12] Tiago M. Fernández-Caramés,et al. A Review on IoT Deep Learning UAV Systems for Autonomous Obstacle Detection and Collision Avoidance , 2019, Remote. Sens..
[13] J. Flexas,et al. UAVs challenge to assess water stress for sustainable agriculture , 2015 .
[14] Paolo Maggiore,et al. Development of a multifunctional panel for aerospace use through SLM Additive Manufacturing , 2018 .
[15] Huping Ye,et al. Optimizing distribution of droneports for emergency monitoring of flood disasters in China , 2020, Journal of Flood Risk Management.
[16] Pier Matteo Barone,et al. Remote Sensing Materials for a Preliminary Archaeological Evaluation of the Giove Countryside (Terni, Italy) , 2020, Remote. Sens..
[17] Stefan Junk,et al. Application of Sustainable Design in Additive Manufacturing of an Unmanned Aerial Vehicle , 2016 .
[18] Chunhua Zhang,et al. The application of small unmanned aerial systems for precision agriculture: a review , 2012, Precision Agriculture.
[19] Jutima Simsiriwong,et al. Experimental Vibration Analysis of a Composite UAV Wing , 2012 .
[20] Pier Matteo Barone,et al. Drones as an Integral Part of Remote Sensing Technologies to Help Missing People , 2020, Drones.
[21] Mitchell D. Harley,et al. UAVs for coastal surveying , 2016 .
[22] Bharadwaj Rao,et al. The societal impact of commercial drones , 2016 .
[23] Ramana V. Grandhi,et al. A survey of structural and multidisciplinary continuum topology optimization: post 2000 , 2014 .
[24] Roger Clarke,et al. The regulation of civilian drones' impacts on public safety , 2014, Comput. Law Secur. Rev..
[25] David Z. Zhang,et al. Additive manufacturing: A framework for implementation , 2014 .
[26] Paul E. I. Pounds,et al. Paper Plane: Towards Disposable Low-Cost Folded Cellulose-Substrate UAVs , 2012, ICRA 2012.
[27] Wai Yee Yeong,et al. Additive manufacturing in unmanned aerial vehicles (UAVs): Challenges and potential , 2017 .
[28] Eric P. Flynn,et al. Low-cost approaches to UAV design using advanced manufacturing techniques , 2013, 2013 IEEE Integrated STEM Education Conference (ISEC).
[29] Jens Bange,et al. First application of the meteorological Mini-UAV 'M2AV' , 2007 .
[30] Mateusz Gregorski. Analysis of international law on Unmanned Aerial Vehicles through the prism of European Union law , 2019, Przegląd europejski.
[31] P. Razvan,et al. Applications of the Selective Laser Melting Technology in the Industrial and Medical Fields , 2016 .
[32] Justin Schwartz. Engineering , 1929, Nature.
[33] Jacek Mieloszyk,et al. Preliminary design of 3D printed fittings for UAV , 2019, Aircraft Engineering and Aerospace Technology.
[34] Salvatore Brischetto,et al. A multipurpose modular drone with adjustable arms produced via the FDM additive manufacturing process , 2016 .
[35] Julian Tan Kok Ping,et al. Generic unmanned aerial vehicle (UAV) for civilian application-A feasibility assessment and market survey on civilian application for aerial imaging , 2012, 2012 IEEE Conference on Sustainable Utilization and Development in Engineering and Technology (STUDENT).
[36] Felipe Gonzalez,et al. Design and Testing of a Recycled 3D Printed and Foldable Unmanned Aerial Vehicle for Remote Sensing , 2018, 2018 International Conference on Unmanned Aircraft Systems (ICUAS).
[37] Liang Hou,et al. Additive manufacturing and its societal impact: a literature review , 2013 .