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Our mission is to perform research, provide services, apply analytics, and create products that enable secure and high-performance embedded and adaptive computing solutions.\u003C/p>","2025-07-02T02:09:43.558Z","2025-07-02T02:09:45.210Z","2025-07-02T02:09:45.201Z","185",{"id":877,"name":878,"alternativeText":16,"caption":16,"width":879,"height":880,"formats":881,"hash":905,"ext":20,"mime":23,"size":906,"url":907,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":908,"updatedAt":908},467,"Graf.Circular.FullColor.RGB.png",2251,2224,{"large":882,"small":888,"medium":894,"thumbnail":900},{"ext":20,"url":883,"hash":884,"mime":23,"name":885,"path":16,"size":886,"width":615,"height":887},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/dasc25/large_Graf_Circular_Full_Color_RGB_323d0b0d92.png","large_Graf_Circular_Full_Color_RGB_323d0b0d92","large_Graf.Circular.FullColor.RGB.png",191.34,988,{"ext":20,"url":889,"hash":890,"mime":23,"name":891,"path":16,"size":892,"width":578,"height":893},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/dasc25/small_Graf_Circular_Full_Color_RGB_323d0b0d92.png","small_Graf_Circular_Full_Color_RGB_323d0b0d92","small_Graf.Circular.FullColor.RGB.png",84.21,494,{"ext":20,"url":895,"hash":896,"mime":23,"name":897,"path":16,"size":898,"width":628,"height":899},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/dasc25/medium_Graf_Circular_Full_Color_RGB_323d0b0d92.png","medium_Graf_Circular_Full_Color_RGB_323d0b0d92","medium_Graf.Circular.FullColor.RGB.png",122.49,741,{"ext":20,"url":901,"hash":902,"mime":23,"name":903,"path":16,"size":904,"width":815,"height":26},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/dasc25/thumbnail_Graf_Circular_Full_Color_RGB_323d0b0d92.png","thumbnail_Graf_Circular_Full_Color_RGB_323d0b0d92","thumbnail_Graf.Circular.FullColor.RGB.png",17.65,"Graf_Circular_Full_Color_RGB_323d0b0d92",61.79,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/dasc25/Graf_Circular_Full_Color_RGB_323d0b0d92.png","2025-07-02T02:09:14.297Z",{"id":910,"variation":46,"button":911},473,[912],{"id":913,"label":741,"size":50,"color":51,"style":16,"icon":52,"iconPosition":53,"url":914,"newWindow":55,"downloadable":16,"shape":16},499,"https://www.grafresearch.com","-146",{"id":201,"name":917,"description":918,"createdAt":919,"updatedAt":920,"publishedAt":921,"url_path_id":922,"logo":923,"website":947,"url_path":952},"Merlin Labs","\u003Cp>We are building a pilot that takes the skills of a human pilot and translates them into software.\u003C/p>","2025-07-07T15:18:11.091Z","2025-07-07T15:18:13.018Z","2025-07-07T15:18:13.010Z","186",{"id":924,"name":925,"alternativeText":16,"caption":16,"width":926,"height":926,"formats":927,"hash":943,"ext":20,"mime":23,"size":944,"url":945,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":946,"updatedAt":946},468,"Logoonly.png",900,{"small":928,"medium":933,"thumbnail":938},{"ext":20,"url":929,"hash":930,"mime":23,"name":931,"path":16,"size":932,"width":578,"height":578},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/dasc25/small_Logoonly_00e705e6b4.png","small_Logoonly_00e705e6b4","small_Logoonly.png",22.46,{"ext":20,"url":934,"hash":935,"mime":23,"name":936,"path":16,"size":937,"width":628,"height":628},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/dasc25/medium_Logoonly_00e705e6b4.png","medium_Logoonly_00e705e6b4","medium_Logoonly.png",42.77,{"ext":20,"url":939,"hash":940,"mime":23,"name":941,"path":16,"size":942,"width":26,"height":26},"https://confcats-siteplex.s3.us-east-1.amazonaws.com/dasc25/thumbnail_Logoonly_00e705e6b4.png","thumbnail_Logoonly_00e705e6b4","thumbnail_Logoonly.png",5.29,"Logoonly_00e705e6b4",11.81,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/dasc25/Logoonly_00e705e6b4.png","2025-07-07T15:17:51.318Z",{"id":948,"variation":46,"button":949},474,[950],{"id":578,"label":741,"size":50,"color":51,"style":16,"icon":52,"iconPosition":53,"url":951,"newWindow":55,"downloadable":16,"shape":16},"https://merlinlabs.com/","-147",{"id":219,"name":954,"description":955,"createdAt":956,"updatedAt":957,"publishedAt":958,"url_path_id":959,"logo":960,"website":967,"url_path":973},"AFuzion","\u003Cp style=\"text-align:justify;\">AFuzion is North America’s largest aviation certification services company. Working with 80% of the world’s largest 500 aviation development companies, AFuzion provides aviation certification Frameworks, Engineering Development, Training, Mentoring, Auditing, Gap Analysis, and formal Certification per FAA, EASA, Military, and most worldwide certification authorities. &nbsp;Specialty areas include DO-178C, DO-254, ARP4754A, ARP4761, DO-278A, DO-200B, DO-326A. &nbsp;Learn more at \u003Ca target=\"_blank\" rel=\"noopener noreferrer\" href=\"http://www.afuzion.com/\">www.afuzion.com\u003C/a>\u003C/p>","2025-08-13T22:57:24.440Z","2025-08-13T22:57:26.235Z","2025-08-13T22:57:26.222Z","195",{"id":961,"name":962,"alternativeText":16,"caption":16,"width":26,"height":26,"formats":16,"hash":963,"ext":20,"mime":23,"size":964,"url":965,"previewUrl":16,"provider":30,"provider_metadata":16,"createdAt":966,"updatedAt":966},479,"thumbnail_A_Fuzion_LOGO_on_black_500x500px_1_5b698077a8_d2ffc848d6.png","thumbnail_A_Fuzion_LOGO_on_black_500x500px_1_5b698077a8_d2ffc848d6_d58d26292c",4.43,"https://confcats-siteplex.s3.us-east-1.amazonaws.com/dasc25/thumbnail_A_Fuzion_LOGO_on_black_500x500px_1_5b698077a8_d2ffc848d6_d58d26292c.png","2025-08-13T22:57:08.617Z",{"id":968,"variation":46,"button":969},475,[970],{"id":971,"label":741,"size":50,"color":51,"style":16,"icon":52,"iconPosition":53,"url":972,"newWindow":55,"downloadable":16,"shape":16},501,"http://www.afuzion.com/","-152",{"id":92,"name":975,"description":976,"createdAt":977,"updatedAt":978,"publishedAt":979,"url_path_id":980,"logo":981,"website":1013,"url_path":1019},"OPAL-RT Technologies","\u003Cp style=\"text-align:justify;\">OPAL-RT Hardware-in-the-Loop (HIL) Test Benches solution accelerate the design, testing, and validation of complex control systems. Shortening the development cycle and reducing physical (ground, flight) testing. Its open platform integrates well with existing system architecture. 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Multicore Timing Analysis and Interference Mitigation\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:34.4pt;\">64\u003C/td>\u003Ctd style=\"width:418pt;\">An Open-Source DO-178C Structural Coverage Tool\u003C/td>\u003Ctd style=\"width:354pt;\">Andrew Oppelt, Wentao Zhang, Ikjun Jeon, Minji Park, Steven VanderLeest, Darko Marinov\u003C/td>\u003Ctd>CS7 - Testing and Certification I\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:23.5pt;\">303\u003C/td>\u003Ctd style=\"width:418pt;\">Open Sky, Open Threats: Replay Attacks in Space Launch and Re-entry Phases\u003C/td>\u003Ctd style=\"width:354pt;\">Nesrine Benchoubane, Eray Guven, Gunes Karabulut Kurt\u003C/td>\u003Ctd>CN7 - Communication Systems II\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:46.25pt;\">117\u003C/td>\u003Ctd style=\"width:418pt;\">Enhanced AAM Surveillance using Radar/Visual Distributed Sensing\u003C/td>\u003Ctd style=\"width:354pt;\">Federica Vitiello, Flavia Causa, Roberto Opromolla, Giancarmine Fasano, Chester Dolph, Todd Ferrante, Thomas Lombaerts, Corey Ippolito\u003C/td>\u003Ctd>AM3 - Surveillance &amp; Detect and Avoid\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:34.4pt;\">354\u003C/td>\u003Ctd style=\"width:418pt;\">A Landscape of Commercial On-Board Computers and Payload Processing Computers for CubeSats: Fault Tolerance and Implementation Challenges\u003C/td>\u003Ctd style=\"width:354pt;\">Mauren D'Avila, Vinicius Schreiner, Victor Costa, Denis Loubach, Lidia Shibuya, Luis Eduardo Loures, Fernanda Kastensmidt\u003C/td>\u003Ctd>US9 - Autonomous Space Systems\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:34.4pt;\">288\u003C/td>\u003Ctd style=\"width:418pt;\">AI-Driven Miscommunication Identification in Pilot-ATC Communications\u003C/td>\u003Ctd style=\"width:354pt;\">Anahita Imanian, Steven L Estes, Jorid Topi, Shuo chen, Pavan Kumar Bondalapati, Kunal Sarkhel, Tao Yu, Samuel Cheng, Dr. Craig Wanke\u003C/td>\u003Ctd>HF2 - Speech Recognition in Pilot-ATC Communications\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:34.4pt;\">96\u003C/td>\u003Ctd style=\"width:418pt;\">A Collaborative Mixed Reality Digital Twin with Real-Time Scenario Generation using Large Language Models for Air Traffic Management Simulations\u003C/td>\u003Ctd style=\"width:354pt;\">Mohammed Nadirsha Thaivalappil Noushad, Sameer Alam\u003C/td>\u003Ctd>AI6 - Text-Centered AI Applications\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:34.4pt;\">223\u003C/td>\u003Ctd style=\"width:418pt;\">New Machine Learning Approaches for Intrusion Detection in ADS-B\u003C/td>\u003Ctd style=\"width:354pt;\">Mikaëla Ngamboé, Jean-Simon Marrocco, Jean-Yves Ouattara, Jose Manuel Fernandez, Gabriela Nicolescu\u003C/td>\u003Ctd>PO2 - Student &amp; Poster Session I\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">369\u003C/td>\u003Ctd style=\"width:418pt;\">Physics-Based “Realism Checks” for Generated Synthetic Flight Tracks\u003C/td>\u003Ctd style=\"width:354pt;\">Shahab Aref, John Shortle, Lance Sherry\u003C/td>\u003Ctd>AT2 - Higher Levels of Automation in ATM\u003C/td>\u003C/tr>\u003C/tbody>\u003C/table>\u003C/figure>",{"id":1044,"__component":1026,"componentVariation":1027,"styles":16,"header":16,"body":1045},64,{"id":1046,"title":1047,"body":1048,"containerWidth":16,"buttonGroup":16,"media":16},74,"Best of Session Awards","\u003Cfigure class=\"table\">\u003Ctable>\u003Cthead>\u003Ctr>\u003Cth style=\"height:15.5pt;width:75pt;\">Submission ID\u003C/th>\u003Cth style=\"width:418pt;\">Title\u003C/th>\u003Cth style=\"width:354pt;\">Authors\u003C/th>\u003Cth style=\"width:207pt;\">Track/Session\u003C/th>\u003C/tr>\u003C/thead>\u003Ctbody>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">48\u003C/td>\u003Ctd style=\"width:418pt;\">Open-source Stand-Alone Versatile Tensor Accelerator\u003C/td>\u003Ctd style=\"width:354pt;\">Anthony Faure-Gignoux, Kevin Delmas, Adrien Gauffriau, Claire Pagetti\u003C/td>\u003Ctd>AP1 - Embedded Platforms and Hardware Integration in Avionics\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">18\u003C/td>\u003Ctd style=\"width:418pt;\">Tailored Interference Mixer(TIM): A Tool for Evaluating Single and Combined Interference Channel in a Multi-core System\u003C/td>\u003Ctd style=\"width:354pt;\">Jiahao Ge, Yong Cai, Jilu Zhang, Zhouyang Wang, Wen Wang\u003C/td>\u003Ctd>AP2 - Multicore Timing Analysis and Interference Mitigation\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">32\u003C/td>\u003Ctd style=\"width:418pt;\">Segmentation and lossless compression of SAR data: a new approach to ensure transmission robustness\u003C/td>\u003Ctd style=\"width:354pt;\">Guillaume COTTIN, Franck CAZAURANG, Loïc LAVIGNE, Jérôme SARACCO, Franck TAILLIEZ, Vincent CORRETJA, Benoît SOUYRI\u003C/td>\u003Ctd>AP3 - Fault Tolerance, Advanced Networking, and Data Handling\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">177\u003C/td>\u003Ctd style=\"width:418pt;\">Hybrid Quantum-Classical Optimization Method for Avionics Architecture in Space Launcher\u003C/td>\u003Ctd style=\"width:354pt;\">Edwin Isidory, Björn Annighöfer\u003C/td>\u003Ctd>AP4 - Future Avionics Networking and Virtualized Systems\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">11\u003C/td>\u003Ctd style=\"width:418pt;\">Future Avionics Data Networks will be hybrid\u003C/td>\u003Ctd style=\"width:354pt;\">Kees Nuyten, Thomas Le Montagner, Sébastien Gonczaronek, Asterios Souftas\u003C/td>\u003Ctd>AP5 - Optimization and Resource Management in Modular Avionics\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">37\u003C/td>\u003Ctd style=\"width:418pt;\">Photonic Digital High-Performance Processors for Real-Time Avionics\u003C/td>\u003Ctd style=\"width:354pt;\">Felix Päsler, Peter Caruana, Michael Kissner\u003C/td>\u003Ctd>AP6 - High-Performance Computing and AI Integration\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">51\u003C/td>\u003Ctd style=\"width:418pt;\">Establishing a Single Source of Truth for Avionics Platform Verification Through UCoF\u003C/td>\u003Ctd style=\"width:354pt;\">Philipp Chrysalidis, Martin Halle, Frank Thielecke\u003C/td>\u003Ctd>AP7 - Modern Software Architectures and Certification\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">33\u003C/td>\u003Ctd style=\"width:418pt;\">Avionics Virtual Integration Platform to Support Simulation-Based Validation and Verification\u003C/td>\u003Ctd style=\"width:354pt;\">Martin Halle, Frank Thielecke, Peter Mueller\u003C/td>\u003Ctd>AP8 - IMA Systems, Virtual Integration, and Real-Time Platforms\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">329\u003C/td>\u003Ctd style=\"width:418pt;\">A Safety-Critical Control System for RPAS or UAS of the Category „Certified“\u003C/td>\u003Ctd style=\"width:354pt;\">Reinhard Reichel, Marco Dupper, Christian Block, Thorben Hoffmann\u003C/td>\u003Ctd>AP9 - Control, Connectivity, and Electromagnetic Resilience\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">77\u003C/td>\u003Ctd style=\"width:418pt;\">Modeling Security Architectures and Properties usable as Input for an automated Model-based Security Risk Assessment\u003C/td>\u003Ctd style=\"width:354pt;\">Mario Werthwein, Björn Annighöfer\u003C/td>\u003Ctd>CS1 - Security Analysis and Modelling\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">20\u003C/td>\u003Ctd style=\"width:418pt;\">MBSqlE: Enabling SQL as Powerful Query Language for SysML v2 in Aviation\u003C/td>\u003Ctd style=\"width:354pt;\">Alexander Ahlbrecht, Wanja Zaeske, Umut Durak\u003C/td>\u003Ctd>CS2 - Tools for Data Managment and Development\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">174\u003C/td>\u003Ctd style=\"width:418pt;\">Physical Intrusion Detection for Detecting Silent Devices in MIL-STD-1553\u003C/td>\u003Ctd style=\"width:354pt;\">İsa Can Babir, Mustafa Evcil, Zaliha Yüce Tok, Mehmet Atınç Gökyer, Yiğit Emir İşıkçı, Sedat Akleylek\u003C/td>\u003Ctd>CS3 - Security Solutions\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">118\u003C/td>\u003Ctd style=\"width:418pt;\">Model-based Safety Assessment of a Hybrid Fly-by-Wire Flight Control System for a Light Sport Aircraft\u003C/td>\u003Ctd style=\"width:354pt;\">Johannes Bender, Julian Rhein, Nils Schlautmann, Evangelos Huber, Florian Holzapfel\u003C/td>\u003Ctd>CS4 - System and Safety Design and Modeling\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">17\u003C/td>\u003Ctd style=\"width:418pt;\">Employing AI/ML/DL/RL/LLM tools to Advance Aviation Maintenance Processes for Improved safety and Reduced Costs: A Survey\u003C/td>\u003Ctd style=\"width:354pt;\">Sandeep Kalari, Shree Gowri Lenkala, Vikas Ganjigunte Ashok, Ravi Mukkamala\u003C/td>\u003Ctd>CS5 - AI in CSS\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">21\u003C/td>\u003Ctd style=\"width:418pt;\">On the Design of a WebAssembly Interpreter for Safety Critical Avionics Applications\u003C/td>\u003Ctd style=\"width:354pt;\">Wanja Zaeske, A. Cem Önem, Florian Hartung, Umut Durak\u003C/td>\u003Ctd>CS6 - Software and Modelling Topics\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">64\u003C/td>\u003Ctd style=\"width:418pt;\">An Open-Source DO-178C Structural Coverage Tool\u003C/td>\u003Ctd style=\"width:354pt;\">Andrew Oppelt, Wentao Zhang, Ikjun Jeon, Minji Park, Steven VanderLeest, Darko Marinov\u003C/td>\u003Ctd>CS7 - Testing and Certification I\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">274\u003C/td>\u003Ctd style=\"width:418pt;\">From Skepticism to Understanding: Correcting Misconceptions About Overarching Properties\u003C/td>\u003Ctd style=\"width:354pt;\">Zamira Daw, Michael Holloway\u003C/td>\u003Ctd>CS8 - Testing and Certification II\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">121\u003C/td>\u003Ctd style=\"width:418pt;\">Formal Model-Based Traceability for Security Compliance in Satellite Control Systems\u003C/td>\u003Ctd style=\"width:354pt;\">Stojanche Gjorcheski, Jason Jaskolka\u003C/td>\u003Ctd>CS9 - Multicore and Formal Methods\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">46\u003C/td>\u003Ctd style=\"width:418pt;\">Placement Synergy: Bridging ADS-B Ground and Space Sensors for Secure Wide-Area Multilateration\u003C/td>\u003Ctd style=\"width:354pt;\">Ala' Darabseh, Christina Pöpper\u003C/td>\u003Ctd>CN1 - Automatic Dependant Surveillance - Broadcast\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">112\u003C/td>\u003Ctd style=\"width:418pt;\">WILCO: How Prioritizing CPDLC Communication Changes Canadian ATC Operations\u003C/td>\u003Ctd style=\"width:354pt;\">Sabrina Knappe, Élodie Bouzekri, Yanne Sidibe, Jeremy Cooperstock, Philippe Doyon-Poulin\u003C/td>\u003Ctd>CN2 - Communication Systems I\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">137\u003C/td>\u003Ctd style=\"width:418pt;\">A Data-Driven Comparison of DME-based Navigation Performance\u003C/td>\u003Ctd style=\"width:354pt;\">Jan Harbeke, Markus Espen, Matthias Schäfer, Valeriu Vitan, Gerhard Berz, Jens Schmitt\u003C/td>\u003Ctd>CN3 - Navigation in ATM Environment\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">62\u003C/td>\u003Ctd style=\"width:418pt;\">Machine Learning based Multi-constellation Satellite Selection Algorithm in Urban Area\u003C/td>\u003Ctd style=\"width:354pt;\">Pin-Hsun Lee, Harry Leib\u003C/td>\u003Ctd>CN4 - GNSS in Urban Areas\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">67\u003C/td>\u003Ctd style=\"width:418pt;\">GNSS Induced Spoofing Detection Based on Joint Code Phase and Carrier Phase\u003C/td>\u003Ctd style=\"width:354pt;\">Wenyi Wang, Xuzhou Guo, Ruihua Liu\u003C/td>\u003Ctd>CN5 - GNSS Spoofing\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">334\u003C/td>\u003Ctd style=\"width:418pt;\">An Interference-Aware Radar Network Optimization Framework for AAM Surveillance\u003C/td>\u003Ctd style=\"width:354pt;\">Leonardo Milone, Flavia Causa, Giancarmine Fasano, Luca Manica, Giacomo Gentile, Michael Dubois\u003C/td>\u003Ctd>CN6 - Non-cooperative Surveillance\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">303\u003C/td>\u003Ctd style=\"width:418pt;\">Open Sky, Open Threats: Replay Attacks in Space Launch and Re-entry Phases\u003C/td>\u003Ctd style=\"width:354pt;\">Nesrine Benchoubane, Eray Guven, Gunes Karabulut Kurt\u003C/td>\u003Ctd>CN7 - Communication Systems II\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">336\u003C/td>\u003Ctd style=\"width:418pt;\">K-Band Radar System Analysis for Airport Runway and Taxiway Incursion Surveillance Applications\u003C/td>\u003Ctd style=\"width:354pt;\">Enrico Miccio, Giancarmine Fasano, Alessandro D'Ortenzio, Weston Lahr\u003C/td>\u003Ctd>CN8 - Surveillance for Ground Operations\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">128\u003C/td>\u003Ctd style=\"width:418pt;\">Architecture of Drone Swarm with autonomous decision making based on Reinforcement Learning\u003C/td>\u003Ctd style=\"width:354pt;\">Gregor Semmler, Julian Thomas, Andreas Frey\u003C/td>\u003Ctd>CN9 - Visual/LEO-based Sensing and Navigation, and Swarms\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">56\u003C/td>\u003Ctd style=\"width:418pt;\">Free Vertical Planning in a TBO Environment\u003C/td>\u003Ctd style=\"width:354pt;\">Alexander Kuenz\u003C/td>\u003Ctd>AT1 - Trajectory Management\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">369\u003C/td>\u003Ctd style=\"width:418pt;\">PHYSICS-BASED “REALISM CHECKS” FOR GENERATED SYNTHETIC FLIGHT TRACKS\u003C/td>\u003Ctd style=\"width:354pt;\">Shahab Aref, John Shortle, Lance Sherry\u003C/td>\u003Ctd>AT2 - Higher Levels of Automation in ATM\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">101\u003C/td>\u003Ctd style=\"width:418pt;\">Free Route Airspace Trajectory Planning Using Conditional Diffusion Model\u003C/td>\u003Ctd style=\"width:354pt;\">Wentao Zhao, Peng Zhao, Kaiquan Cai, Zexuan Wu\u003C/td>\u003Ctd>AT3 - New Enroute Traffic Management Concepts\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">298\u003C/td>\u003Ctd style=\"width:418pt;\">Estimation of Context-Based Air Traffic Performance Baselines with Multi-Quantile Regression\u003C/td>\u003Ctd style=\"width:354pt;\">Mayara Condé Rocha Murça\u003C/td>\u003Ctd>AT4 - Performance Assessment\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">250\u003C/td>\u003Ctd style=\"width:418pt;\">Preliminary Risk Analysis and Fuel Benefits of High-Altitude Free Flight Regions\u003C/td>\u003Ctd style=\"width:354pt;\">Mina Cezairli, Keith Cort, Andy Eskenazi, Brandon Hadfield, Marek Homola, Sarah Reider, Van Tran, Marek Travnik, R. John Hansman\u003C/td>\u003Ctd>AT6 - Higher Airspace Operations &amp; STM\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">70\u003C/td>\u003Ctd style=\"width:418pt;\">Adaptive Linear Holding Using Reinforcement Learning to Reduce Terminal Manoeuvring Area Delays and Holdings\u003C/td>\u003Ctd style=\"width:354pt;\">Zhi Jun Lim, Hao Jiang, Duc-Thinh Pham, Sameer Alam\u003C/td>\u003Ctd>AT7 - Terminal Area\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">79\u003C/td>\u003Ctd style=\"width:418pt;\">Preparing for Potential Closure of European Airspaces due to Re-entering Space Objects\u003C/td>\u003Ctd style=\"width:354pt;\">Enrico Spinielli, Rainer Koelle, Quinten Goens\u003C/td>\u003Ctd>AT8 - Flow Management\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">304\u003C/td>\u003Ctd style=\"width:418pt;\">OTFS-OAM Integration for Enhanced Communication and Detection of Low-Altitude UAVs in Urban Environments\u003C/td>\u003Ctd style=\"width:354pt;\">CHEN Jiateng, WANG Yu, ZHANG Chao\u003C/td>\u003Ctd>AM1 - Enabling Communications for Mobility Operations\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">206\u003C/td>\u003Ctd style=\"width:418pt;\">Strategic and Pretactical trajectory generation and traffic deconfliction for UAM: application to unstructured and partially structured airspace\u003C/td>\u003Ctd style=\"width:354pt;\">Flavia Causa, Giancarmine Fasano\u003C/td>\u003Ctd>AM2 - Smooth Flow, Separation and Deconfliction\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:46.5pt;\">117\u003C/td>\u003Ctd style=\"width:418pt;\">Enhanced AAM Surveillance using Radar/Visual Distributed Sensing\u003C/td>\u003Ctd style=\"width:354pt;\">Federica Vitiello, Flavia Causa, Roberto Opromolla, Giancarmine Fasano, Chester Dolph, Todd Ferrante, Thomas Lombaerts, Corey Ippolito\u003C/td>\u003Ctd>AM3 - Surveillance &amp; Detect and Avoid\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">10\u003C/td>\u003Ctd style=\"width:418pt;\">Demand-Driven Fleet Mix Optimization for Urban Air Mobility Operations\u003C/td>\u003Ctd style=\"width:354pt;\">Minji Shin, Sang Hyun Kim\u003C/td>\u003Ctd>AM4 - Fleet and Infrastructure Optimization\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">211\u003C/td>\u003Ctd style=\"width:418pt;\">Investigating Cyclic Airspace Corridor Optimization for UAS Traffic Management based on Deep Reinforcement Learning\u003C/td>\u003Ctd style=\"width:354pt;\">Rodolphe Fremond, Matthieu Verdoucq, Zeynep Bilgin, Murat Bronz\u003C/td>\u003Ctd>AM5 - Airspace Design and Route Planning\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">135\u003C/td>\u003Ctd style=\"width:418pt;\">Run Time Assurance for a Hybrid Actuated Fly-by-Wire Aircraft: A Control Barrier Function Approach\u003C/td>\u003Ctd style=\"width:354pt;\">Evangelos Huber, Muhammad Hassan, Johannes Bender, Nils Schlautmann, Julius Hoffelner, Florian Holzapfel\u003C/td>\u003Ctd>AM6 - Simulation and Testing Frameworks\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">295\u003C/td>\u003Ctd style=\"width:418pt;\">Evaluating and Addressing Operational Uncertainties in Strategic Deconfliction for Advanced Air Mobility\u003C/td>\u003Ctd style=\"width:354pt;\">Wallace Souza, Mayara Murça, Marcelo Guterres\u003C/td>\u003Ctd>AM7 - Strategic Conflict Management\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">328\u003C/td>\u003Ctd style=\"width:418pt;\">An Efficient Privacy-preserving Intrusion Detection Scheme for UAV Swarm Networks\u003C/td>\u003Ctd style=\"width:354pt;\">Kanchon Gharami, Shafika Showkat Moni\u003C/td>\u003Ctd>US1 - UAS Communications and Cybersecurity\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">351\u003C/td>\u003Ctd style=\"width:418pt;\">Predictive Uncertainty for Runtime Assurance of a Real-Time Computer Vision-Based Landing System\u003C/td>\u003Ctd style=\"width:354pt;\">Romeo Valentin, Sydney M. Katz, Artur Carneiro, Don Walker, Mykel J. Kochenderfer\u003C/td>\u003Ctd>US2 - UAS Navigation and Guidance\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">61\u003C/td>\u003Ctd style=\"width:418pt;\">Integration Challenges with Conflict Management Systems and Route Planning for Autonomous Aerial Cargo Operations\u003C/td>\u003Ctd style=\"width:354pt;\">Margarete Groll, Spencer Granlund, Luis Alvarez\u003C/td>\u003Ctd>US3 - UAS Traffic and Mission Management I\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">148\u003C/td>\u003Ctd style=\"width:418pt;\">Performance Estimation of Aircraft Computer Vision Models using Optimal Transport-based Distributional Mismatch\u003C/td>\u003Ctd style=\"width:354pt;\">Binshuai Wang, Can Vu, Peng Wei\u003C/td>\u003Ctd>US4 - Separation Assurance and Collision Avoidance\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">267\u003C/td>\u003Ctd style=\"width:418pt;\">Advancing ADS-L: Implementation, Performance Evaluation, and Conformance Monitoring in U-space\u003C/td>\u003Ctd style=\"width:354pt;\">Benjamin Lochow, Fabian Frickenstein, Robert Kemmerling, Maarten Uijt de Haag\u003C/td>\u003Ctd>US5 - Separation Assurance and Collision Avoidance\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">293\u003C/td>\u003Ctd style=\"width:418pt;\">Drone Performance Modelling for U-space Strategic Deconflicting Services\u003C/td>\u003Ctd style=\"width:354pt;\">Enric Pastor, Albert Sanchez, Cristina Barrado\u003C/td>\u003Ctd>US6 - UAS Traffic and Mission Management II\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">222\u003C/td>\u003Ctd style=\"width:418pt;\">VerifIoU - Certified Robustness of Object Detection to Perturbations\u003C/td>\u003Ctd style=\"width:354pt;\">Noemie Cohen, Melanie Ducoffe, Ryma Boumazouza, Xavier Pucel, Claire Pagetti, Christophe Gabreau, Audrey Galametz\u003C/td>\u003Ctd>US7 - UAS Applications and Operations I\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">226\u003C/td>\u003Ctd style=\"width:418pt;\">Small Drone Detection from a Moving Camera using On-Device ROI Inference\u003C/td>\u003Ctd style=\"width:354pt;\">Daniel Justino, Alexander Funke\u003C/td>\u003Ctd>US8 - UAS Applications and Operations II\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">354\u003C/td>\u003Ctd style=\"width:418pt;\">A Landscape of Commercial On-Board Computers and Payload Processing Computers for CubeSats: Fault Tolerance and Implementation Challenges\u003C/td>\u003Ctd style=\"width:354pt;\">Mauren D'Avila, Vinicius Schreiner, Victor Costa, Denis Loubach, Lidia Shibuya, Luis Eduardo Loures, Fernanda Kastensmidt\u003C/td>\u003Ctd>US9 - Autonomous Space Systems\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">15\u003C/td>\u003Ctd style=\"width:418pt;\">MICA: Trust-Driven Design Refinements for Camouflaged Object Detection Applications\u003C/td>\u003Ctd style=\"width:354pt;\">Debra Hogue, D. Shane Elliott, Lacey Schley, Justin Lewis, Shane Connelly, Chris Weaver\u003C/td>\u003Ctd>HF1 - Human Autonomy Teaming (HAT)\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">288\u003C/td>\u003Ctd style=\"width:418pt;\">AI-Driven Miscommunication Identification in Pilot-ATC Communications\u003C/td>\u003Ctd style=\"width:354pt;\">Anahita Imanian, Steven L Estes, Jorid Topi, Shuo chen, Pavan Kumar Bondalapati, Kunal Sarkhel, Tao Yu, Samuel Cheng, Dr. Craig Wanke\u003C/td>\u003Ctd>HF2 - Speech Recognition in Pilot-ATC Communications\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">179\u003C/td>\u003Ctd style=\"width:418pt;\">Assessing an evaluation framework for human-ai-teaming in flight deck applications\u003C/td>\u003Ctd style=\"width:354pt;\">Patrick Lorrig, Lennart Lux, Michelle Fini, Maria Wirzberger, Zamira Daw\u003C/td>\u003Ctd>HF3 - Flight ops Interfaces\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">331\u003C/td>\u003Ctd style=\"width:418pt;\">Cognitive Agent Evaluation for Synthetic Pilot Training\u003C/td>\u003Ctd style=\"width:354pt;\">Jiří Hanák, Jiří Novák, Peter Chudý\u003C/td>\u003Ctd>HF4 - HMI and Situation Awareness\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">136\u003C/td>\u003Ctd style=\"width:418pt;\">Behavior Trees for Coordinated Integrated Air Defense: A Modular Approach for AI in Simulation-Based Training\u003C/td>\u003Ctd style=\"width:354pt;\">Fabian Stracker, Michael Strohal, Peter Stütz\u003C/td>\u003Ctd>HF5 - Human Factors in Cockpit Operations\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:46.5pt;\">75\u003C/td>\u003Ctd style=\"width:418pt;\">Design and Evaluation of a Modern Controller Working Position using High-Fidelity Mock-Ups\u003C/td>\u003Ctd style=\"width:354pt;\">Lennard Nöhren, Lukas Tyburzy, Marco-Michael Temme, Kathleen Muth, Thomas Hofmann, Deike Heßler, Felix Tenberg, Eilert Viet, Michael Wimmer, Roy Norbart\u003C/td>\u003Ctd>HF6 - Designing ATM and Aircraft Integration\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">292\u003C/td>\u003Ctd style=\"width:418pt;\">Objective Assessment Methods for Pilots' Psychological Resistance against Loss of Spatial Orientation\u003C/td>\u003Ctd style=\"width:354pt;\">Jan Boril, Vladimir Smrz, Vratislav Pokorny, Veronika Lacinova\u003C/td>\u003Ctd>HF8 - Pilot Perception and Mixed Reality\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">90\u003C/td>\u003Ctd style=\"width:418pt;\">Uncovering Resilient Behavior in the Aviation Safety Reporting System Using Large Language Models\u003C/td>\u003Ctd style=\"width:354pt;\">Bryan Matthews\u003C/td>\u003Ctd>HF9 - Aviation Automation and Resilience\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">81\u003C/td>\u003Ctd style=\"width:418pt;\">Overarching Properties-based Arguments for the Safety Assurance of an AI-Assisted Runway Alignment System\u003C/td>\u003Ctd style=\"width:354pt;\">Saswata Paul, Daniel Prince, Naresh Iyer, Michael Durling, Liang Tang, Baoluo Meng, Mike Meiners, Sarat Chandra Varanasi\u003C/td>\u003Ctd>AI1 - Certification Frameworks\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">220\u003C/td>\u003Ctd style=\"width:418pt;\">Edge AI-Enabled Radar and Camera Integration for Real-Time Drone Detection and Classification\u003C/td>\u003Ctd style=\"width:354pt;\">Varun Mehta, Hamid Azad, Fardad Dadboud, Miodrag Bolic, Iraj Mantegh\u003C/td>\u003Ctd>AI2 - Computer Vision Applications\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">349\u003C/td>\u003Ctd style=\"width:418pt;\">Flight2Vec: An Aviation-Focused Deep Learning Framework for Predictive Analytics\u003C/td>\u003Ctd style=\"width:354pt;\">Kunal Sarkhel, Bulent Ayhan, Shuo Chen, Pavan Kumar Bondalapati, Anahita Imanian, Jason Reinhart\u003C/td>\u003Ctd>AI3 - Environmental and Operational Optimzation\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:15.5pt;\">305\u003C/td>\u003Ctd style=\"width:418pt;\">Transformer-Based Vertical Profile Optimization and Fuel Consumption Reduction\u003C/td>\u003Ctd style=\"width:354pt;\">Shicheng Li, Qiuli Wu, Leihong Li, Chao Zhang, Na Xing, Yiqi Li\u003C/td>\u003Ctd>AI4 - Flight Trayectory Optimization\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">327\u003C/td>\u003Ctd style=\"width:418pt;\">Certifying Machine Learning in Aviation: An End-to-End DAL C Case Study\u003C/td>\u003Ctd style=\"width:354pt;\">Konstantin Dmitriev, Julian Rhein, Johannes Bender, Lukas Beller, Yuning He, Johan Schumann, Florian Holzapfel\u003C/td>\u003Ctd>AI5 - Certification Implementation\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">96\u003C/td>\u003Ctd style=\"width:418pt;\">A Collaborative Mixed Reality Digital Twin with Real-Time Scenario Generation using Large Language Models for Air Traffic Management Simulations\u003C/td>\u003Ctd style=\"width:354pt;\">Mohammed Nadirsha Thaivalappil Noushad, Sameer Alam\u003C/td>\u003Ctd>AI6 - Text-Centered AI Applications\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">239\u003C/td>\u003Ctd style=\"width:418pt;\">From ODD to Data: An End-to-End Toolchain for Synthetic Data Generation – A Case Study on AI-Based Runway Detection\u003C/td>\u003Ctd style=\"width:354pt;\">Saymon Gattnar, Henry Späth, Yassine AKHIAT, Zamira DAW\u003C/td>\u003Ctd>AI7 - Data Coverage in Computer Vision\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">375\u003C/td>\u003Ctd style=\"width:418pt;\">Deriving Safety-related Performance Requirements for Machine Learnt Aeronautical Applications\u003C/td>\u003Ctd style=\"width:354pt;\">Ganesh Pai\u003C/td>\u003Ctd>AI8 - Safety Considerations\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:62.0pt;\">256\u003C/td>\u003Ctd style=\"width:418pt;\">Investigation of Fast Topological Data Analysis Feature Extraction for High-Rate Dynamic Prediction\u003C/td>\u003Ctd style=\"width:354pt;\">Daniel Andres Salazar Martinez, Yang Kang Chua, Arman Razmarashooli, Metrid Okumu, Simon Laflamme, Chao Hu, Paul T. Schrader, Gurcan Comert, Negash Begashaw, Jacob Dodson, Erik Blasch\u003C/td>\u003Ctd>AI9 - Verification\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">376\u003C/td>\u003Ctd style=\"width:418pt;\">Feel the Speed: Supporting Novice eVTOL Pilots in Simplified Vehicle Operations with Haptic Cues\u003C/td>\u003Ctd style=\"width:354pt;\">Dominik Janetzko, Hany Abdelfattah, Jan Baier, Daniel Dollinger, Michael Zintl\u003C/td>\u003Ctd>HF7 - eVTOL and Advanced Air Mobility\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">134\u003C/td>\u003Ctd style=\"width:418pt;\">Verification and Validation of Dynamic Reconfiguration in Integrated Modular Avionics with a MATLAB/Simulink ARINC 653 Blockset\u003C/td>\u003Ctd style=\"width:354pt;\">Bojan Lukić, Umut Durak, Matthias Klimmek, Umayr Jahagirdar, Neelakanta Erabhovi, Manju Nanda\u003C/td>\u003Ctd>PO2 - Student &amp; Poster Session II\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">34\u003C/td>\u003Ctd style=\"width:418pt;\">Dynamic Airspace Re-configuration for Tactical Drone Mission Changes\u003C/td>\u003Ctd style=\"width:354pt;\">Juergen Teutsch, Co Petersen, Tanja Bos, Rolf Zon, Niklas Mekelburger\u003C/td>\u003Ctd>AT5 - Unmanned Traffic Management\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">361\u003C/td>\u003Ctd style=\"width:418pt;\">A Distributed Smart Power Management System for Satellites Data over Power Bus\u003C/td>\u003Ctd style=\"width:354pt;\">yijun huang, xiaofeng wu, xueliang bai, Jiashu Wu, Xianliang Chen, Kaiyi Ke\u003C/td>\u003Ctd>PO2 - Student &amp; Poster Session III\u003C/td>\u003C/tr>\u003Ctr>\u003Ctd style=\"height:31.0pt;\">223\u003C/td>\u003Ctd style=\"width:418pt;\">New Machine Learning Approaches for Intrusion Detection in ADS-B\u003C/td>\u003Ctd style=\"width:354pt;\">Mikaëla Ngamboé, Jean-Simon Marrocco, Jean-Yves Ouattara, Jose Manuel Fernandez, Gabriela Nicolescu\u003C/td>\u003Ctd>PO2 - Student &amp; Poster Session I\u003C/td>\u003C/tr>\u003C/tbody>\u003C/table>\u003C/figure>",{"data":1050,"meta":1051},{"id":176,"heading":509,"createdAt":514,"updatedAt":515,"publishedAt":516,"url_path_id":517,"url_path":510,"contentType":103},{},1778852098700]