default search action
Roderich Groß
Person information
- affiliation: TU Darmstadt, Germany
- affiliation (former): University of Sheffield, Department of Automatic Control and Systems Engineering, UK
- affiliation (former): Université libre de Bruxelles, Belgium
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [c67]Genki Miyauchi, Mohamed S. Talamali, Roderich Groß:
A Comparative Study of Energy Replenishment Strategies for Robot Swarms. ANTS 2024: 3-15 - [i5]Jahir Argote-Gerald, Genki Miyauchi, Paul A. Trodden, Roderich Gross:
On the Benefits of Robot Platooning for Navigating Crowded Environments. CoRR abs/2410.14406 (2024) - 2023
- [c66]Genki Miyauchi, Yuri K. Lopes, Roderich Groß:
Sharing the Control of Robot Swarms Among Multiple Human Operators: A User Study. IROS 2023: 8847-8853 - 2022
- [j26]Zhikun Wang, Roderich Groß, Shiyu Zhao:
Aerobatic Tic-Toc Control of Planar Quadcopters via Reinforcement Learning. IEEE Robotics Autom. Lett. 7(2): 2140-2147 (2022) - [c65]Gopesh Yadav Dosieah, Anil Özdemir, Melvin Gauci, Roderich Groß:
Moving Mixtures of Active and Passive Elements with Robots that Do Not Compute. ANTS Conference 2022: 183-195 - [c64]João V. Amorim Marques, María-Teresa Lorente, Roderich Groß:
Multi-Robot Systems Research: A Data-Driven Trend Analysis. DARS 2022: 537-549 - [c63]Chrystian Edmundo Pool Yuca Huanca, Gian Paolo Incremona, Roderich Groß, Patrizio Colaneri:
Design of a Switched Control Lyapunov Function for Mobile Robots Aggregation. ICINCO 2022: 492-499 - [c62]Genki Miyauchi, Yuri K. Lopes, Roderich Groß:
Multi-Operator Control of Connectivity-Preserving Robot Swarms Using Supervisory Control Theory. ICRA 2022: 6889-6895 - [c61]Edward Bray, Roderich Gross:
Distributed Optimisation and Deconstruction of Bridges by Self-Assembling Robots. Robotics: Science and Systems 2022 - 2021
- [j25]Matthew J. Doyle, João V. Amorim Marques, Isaac Vandermeulen, Christopher Parrott, Yue Gu, Xinyu Xu, Andreas Kolling, Roderich Groß:
Modular Fluidic Propulsion Robots. IEEE Trans. Robotics 37(2): 532-549 (2021) - [c60]Edward Bray, Roderich Groß:
Distributed Self-Assembly of Cantilevers by Force-Aware Robots. MRS 2021: 110-118 - [c59]Thomas Green, Kevin Kamel, Siyuan Li, Christopher Shinn, Paolo Toscano, Xintong Wang, Yuchen Ye, Roderich Groß:
A Minimalist Solution to the Multi-robot Barrier Coverage Problem. TAROS 2021: 349-353 - [c58]Arjan Dhesi, Roderich Groß:
Area Coverage in Two-Dimensional Grid Worlds Using Computation-Free Agents. TAROS 2021: 360-364 - 2020
- [j24]Stefan M. Trenkwalder, Iñaki Esnaola, Yuri Kaszubowski Lopes, Andreas Kolling, Roderich Groß:
SwarmCom: an infra-red-based mobile ad-hoc network for severely constrained robots. Auton. Robots 44(1): 93-114 (2020) - [j23]Danesh Tarapore, Roderich Groß, Klaus-Peter Zauner:
Sparse Robot Swarms: Moving Swarms to Real-World Applications. Frontiers Robotics AI 7: 83 (2020) - [c57]Yue Gu, Wei Li, Roderich Groß:
Turing learning with hybrid discriminators: combining the best of active and passive learning. GECCO Companion 2020: 121-122 - [c56]Yuri Kaszubowski Lopes, Stefan M. Trenkwalder, André B. Leal, Tony J. Dodd, Roderich Groß:
Supervisory Control of Robot Swarms Using Public Events. ICRA 2020: 7193-7199 - [c55]Isaac Vandermeulen, Roderich Groß, Andreas Kolling:
Sampling-based search for a semi-cooperative target. IROS 2020: 4774-4781 - [c54]Matthew D. Hall, Anil Özdemir, Roderich Gross:
Self-Reconfiguration in Two-Dimensions via Active Subtraction with Modular Robots. Robotics: Science and Systems 2020
2010 – 2019
- 2019
- [c53]Isaac Vandermeulen, Roderich Groß, Andreas Kolling:
Balanced Task Allocation by Partitioning the Multiple Traveling Salesperson Problem. AAMAS 2019: 1479-1487 - [c52]Isaac Vandermeulen, Roderich Groß, Andreas Kolling:
Turn-minimizing multirobot coverage. ICRA 2019: 1014-1020 - [c51]Anil Özdemir, Melvin Gauci, Andreas Kolling, Matthew D. Hall, Roderich Groß:
Spatial Coverage Without Computation. ICRA 2019: 9674-9680 - [c50]João V. Amorim Marques, Anil Özdemir, Matthew J. Doyle, Daniela Rus, Roderich Groß:
Decentralized Pose Control of Modular Reconfigurable Robots Operating in Liquid Environments. IROS 2019: 4855-4861 - [c49]Federico Pratissoli, Andreagiovanni Reina, Yuri Kaszubowski Lopes, Lorenzo Sabattini, Roderich Groß:
A Soft-Bodied Modular Reconfigurable Robotic System Composed of Interconnected Kilobots. MRS 2019: 50-52 - [c48]Anil Özdemir, John W. Romanishin, Roderich Groß, Daniela Rus:
Decentralized Gathering of Stochastic, Oblivious Agents on a Grid: A Case Study with 3D M-Blocks. MRS 2019: 245-251 - [c47]Alan G. Millard, Roopika Ravikanna, Roderich Groß, David Chesmore:
Towards a Swarm Robotic System for Autonomous Cereal Harvesting. TAROS (2) 2019: 458-461 - [c46]Yingyi Kuang, Yuri Kaszubowski Lopes, Roderich Groß:
Boundary Detection in a Swarm of Kilobots. TAROS (2) 2019: 462-466 - 2018
- [j22]Roderich Groß, Andreas Kolling, Spring Berman, Alcherio Martinoli, Emilio Frazzoli, Fumitoshi Matsuno:
Guest editorial: Special issue on distributed robotics - from fundamentals to applications. Auton. Robots 42(8): 1521-1523 (2018) - [j21]Anil Özdemir, Melvin Gauci, Salomé Bonnet, Roderich Groß:
Finding Consensus Without Computation. IEEE Robotics Autom. Lett. 3(2): 1346-1353 (2018) - [c45]Frans A. Oliehoek, Rahul Savani, Jose Gallego-Posada, Elise van der Pol, Roderich Groß:
Beyond Local Nash Equilibria for Adversarial Networks. BNCAI 2018: 73-89 - [c44]Isaac Vandermeulen, Roderich Groß, Andreas Kolling:
Re-Establishing Communication in Teams of Mobile Robots. IROS 2018: 7947-7954 - [e4]Roderich Groß, Andreas Kolling, Spring Berman, Emilio Frazzoli, Alcherio Martinoli, Fumitoshi Matsuno, Melvin Gauci:
Distributed Autonomous Robotic Systems, The 13th International Symposium, DARS 2016, Natural History Museum, London, UK, November 7-9, 2016. Springer Proceedings in Advanced Robotics 6, Springer 2018, ISBN 978-3-319-73006-6 [contents] - [i4]Frans A. Oliehoek, Rahul Savani, Jose Gallego-Posada, Elise van der Pol, Roderich Groß:
Beyond Local Nash Equilibria for Adversarial Networks. CoRR abs/1806.07268 (2018) - 2017
- [c43]Yuri Kaszubowski Lopes, Stefan M. Trenkwalder, André B. Leal, Tony J. Dodd, Roderich Groß:
Probabilistic Supervisory Control Theory (pSCT) Applied to Swarm Robotics. AAMAS 2017: 1395-1403 - [c42]Anil Özdemir, Melvin Gauci, Roderich Gross:
Shepherding with robots that do not compute. ECAL 2017: 332-339 - [c41]Roderich Gross, Yue Gu, Wei Li, Melvin Gauci:
Generalizing GANs: A Turing Perspective. NIPS 2017: 6316-6326 - [i3]Frans A. Oliehoek, Rahul Savani, Jose Gallego-Posada, Elise van der Pol, Edwin D. de Jong, Roderich Gross:
GANGs: Generative Adversarial Network Games. CoRR abs/1712.00679 (2017) - 2016
- [j20]Yuri K. Lopes, Stefan M. Trenkwalder, André B. Leal, Tony J. Dodd, Roderich Groß:
Supervisory control theory applied to swarm robotics. Swarm Intell. 10(1): 65-97 (2016) - [j19]Wei Li, Melvin Gauci, Roderich Groß:
Turing learning: a metric-free approach to inferring behavior and its application to swarms. Swarm Intell. 10(3): 211-243 (2016) - [c40]Gabriel Kapellmann-Zafra, Nicole Salomons, Andreas Kolling, Roderich Groß:
Human-Robot Swarm Interaction with Limited Situational Awareness. ANTS Conference 2016: 125-136 - [c39]Juan A. Escalera, Matthew J. Doyle, Francesco Mondada, Roderich Groß:
Evo-Bots: A Simple, Stochastic Approach to Self-assembling Artificial Organisms. DARS 2016: 373-385 - [c38]Christopher Parrott, Tony J. Dodd, Roderich Groß:
HyMod: A 3-DOF Hybrid Mobile and Self-Reconfigurable Modular Robot and its Extensions. DARS 2016: 401-414 - [c37]Fernando Perez-Diaz, Stefan M. Trenkwalder, Rüdiger Zillmer, Roderich Groß:
Emergence and Inhibition of Synchronization in Robot Swarms. DARS 2016: 475-486 - [c36]Matthew J. Doyle, Xinyu Xu, Yue Gu, Fernando Perez-Diaz, Christopher Parrott, Roderich Groß:
Modular Hydraulic Propulsion: A robot that moves by routing fluid through itself. ICRA 2016: 5189-5196 - [c35]Stefan M. Trenkwalder, Yuri Kaszubowski Lopes, Andreas Kolling, Anders Lyhne Christensen, Radu Prodan, Roderich Gross:
OpenSwarm: An event-driven embedded operating system for miniature robots. IROS 2016: 4483-4490 - [c34]Gabriel Kapellmann-Zafra, Jianing Chen, Roderich Groß:
Using Google Glass in Human-Robot Swarm Interaction. TAROS 2016: 196-201 - [c33]Nicole Salomons, Gabriel Kapellmann-Zafra, Roderich Groß:
Human Management of a Robotic Swarm. TAROS 2016: 282-287 - [i2]Wei Li, Melvin Gauci, Roderich Gross:
Turing learning: a metric-free approach to inferring behavior and its application to swarms. CoRR abs/1603.04904 (2016) - 2015
- [j18]Jonathan Glancy, Roderich Groß, James V. Stone, Stuart P. Wilson:
A Self-Organising Model of Thermoregulatory Huddling. PLoS Comput. Biol. 11(9) (2015) - [j17]Jianing Chen, Melvin Gauci, Wei Li, Andreas Kolling, Roderich Groß:
Occlusion-Based Cooperative Transport with a Swarm of Miniature Mobile Robots. IEEE Trans. Robotics 31(2): 307-321 (2015) - [c32]Fernando Perez-Diaz, Rüdiger Zillmer, Roderich Groß:
Firefly-Inspired Synchronization in Swarms of Mobile Agents. AAMAS 2015: 279-286 - [p1]Christian Blum, Roderich Groß:
Swarm Intelligence in Optimization and Robotics. Handbook of Computational Intelligence 2015: 1291-1309 - 2014
- [j16]Melvin Gauci, Jianing Chen, Wei Li, Tony J. Dodd, Roderich Groß:
Self-organized aggregation without computation. Int. J. Robotics Res. 33(8): 1145-1161 (2014) - [c31]Yuri K. Lopes, André B. Leal, Tony J. Dodd, Roderich Groß:
Application of Supervisory Control Theory to Swarms of e-puck and Kilobot Robots. ANTS Conference 2014: 62-73 - [c30]Melvin Gauci, Jianing Chen, Wei Li, Tony J. Dodd, Roderich Gross:
Clustering objects with robots that do not compute. AAMAS 2014: 421-428 - [c29]Wei Li, Melvin Gauci, Roderich Gross:
Coevolutionary learning of swarm behaviors without metrics. GECCO 2014: 201-208 - [c28]Christopher Parrott, Tony J. Dodd, Roderich Gross:
HiGen: A high-speed genderless mechanical connection mechanism with single-sided disconnect for self-reconfigurable modular robots. IROS 2014: 3926-3932 - 2013
- [j15]Marco Dorigo, Mauro Birattari, Christian Blum, Anders Lyhne Christensen, Andries P. Engelbrecht, Roderich Groß, Thomas Stützle:
ANTS 2012 special issue - Editorial. Swarm Intell. 7(2-3): 79-81 (2013) - [c27]Wei Li, Melvin Gauci, Roderich Gross:
A coevolutionary approach to learn animal behavior through controlled interaction. GECCO 2013: 223-230 - [c26]Jianing Chen, Melvin Gauci, Roderich Gross:
A strategy for transporting tall objects with a swarm of miniature mobile robots. ICRA 2013: 863-869 - [c25]Jonathan Glancy, Roderich Groß, Stuart P. Wilson:
A Minimal Model of the Phase Transition into Thermoregulatory Huddling. Living Machines 2013: 381-383 - 2012
- [j14]Melvin Gauci, Tony J. Dodd, Roderich Groß:
Why 'GSA: a gravitational search algorithm' is not genuinely based on the law of gravity. Nat. Comput. 11(4): 719-720 (2012) - [j13]Jacques Penders, Lyuba Alboul, Tony J. Prescott, Roderich Groß, Chris Melhuish, Mark Witkowski:
TAROS2011. Robotics Auton. Syst. 60(11): 1355 (2012) - [c24]Jianing Chen, Melvin Gauci, Michael J. Price, Roderich Groß:
Segregation in swarms of e-puck robots based on the Brazil nut effect. AAMAS 2012: 163-170 - [c23]Melvin Gauci, Jianing Chen, Tony J. Dodd, Roderich Groß:
Evolving Aggregation Behaviors in Multi-Robot Systems with Binary Sensors. DARS 2012: 355-367 - [c22]Runxiao Ding, Paul Eastwood, Francesco Mondada, Roderich Groß:
A Stochastic Self-reconfigurable Modular Robot with Mobility Control. TAROS 2012: 416-417 - [e3]Marco Dorigo, Mauro Birattari, Christian Blum, Anders Lyhne Christensen, Andries P. Engelbrecht, Roderich Groß, Thomas Stützle:
Swarm Intelligence - 8th International Conference, ANTS 2012, Brussels, Belgium, September 12-14, 2012. Proceedings. Lecture Notes in Computer Science 7461, Springer 2012, ISBN 978-3-642-32649-3 [contents] - 2011
- [j12]Marco Dorigo, Mauro Birattari, Gianni Di Caro, René Doursat, Andries P. Engelbrecht, Luca Maria Gambardella, Roderich Groß, Erol Sahin, Thomas Stützle:
ANTS 2010 special issue - Editorial. Swarm Intell. 5(3-4): 143-147 (2011) - [c21]Jianing Chen, Roderich Groß:
Cooperative Multi-robot Box Pushing Inspired by Human Behaviour. TAROS 2011: 380-381 - [c20]Stephen Foster, Roderich Groß:
Forming Nested 3D Structures Based on the Brazil Nut Effect. TAROS 2011: 394-395 - [c19]Michael J. Price, Roderich Groß:
Vision-Based Segregation Behaviours in a Swarm of Autonomous Robots. TAROS 2011: 428-429 - [e2]Roderich Groß, Lyuba Alboul, Chris Melhuish, Mark Witkowski, Tony J. Prescott, Jacques Penders:
Towards Autonomous Robotic Systems - 12th Annual Conference, TAROS 2011, Sheffield, UK, August 31 - September 2, 2011. Proceedings. Lecture Notes in Computer Science 6856, Springer 2011, ISBN 978-3-642-23231-2 [contents] - [i1]Melvin Gauci, Tony J. Dodd, Roderich Gross:
Why 'GSA: A Gravitational Search Algorithm' Is Not Genuinely Based on the Law of Gravity. CoRR abs/1106.6223 (2011) - 2010
- [j11]Rehan O'Grady, Roderich Groß, Anders Lyhne Christensen, Marco Dorigo:
Self-assembly strategies in a group of autonomous mobile robots. Auton. Robots 28(4): 439-455 (2010) - [j10]Nikolaus Correll, Roderich Groß:
From swarm robotics to smart materials. Neural Comput. Appl. 19(6): 785-786 (2010) - [e1]Marco Dorigo, Mauro Birattari, Gianni A. Di Caro, René Doursat, Andries P. Engelbrecht, Dario Floreano, Luca Maria Gambardella, Roderich Groß, Erol Sahin, Hiroki Sayama, Thomas Stützle:
Swarm Intelligence - 7th International Conference, ANTS 2010, Brussels, Belgium, September 8-10, 2010. Proceedings. Lecture Notes in Computer Science 6234, Springer 2010, ISBN 978-3-642-15460-7 [contents]
2000 – 2009
- 2009
- [j9]Roderich Groß, Marco Dorigo:
Towards group transport by swarms of robots. Int. J. Bio Inspired Comput. 1(1/2): 1-13 (2009) - [j8]Shervin Nouyan, Roderich Gross, Michael Bonani, Francesco Mondada, Marco Dorigo:
Teamwork in Self-Organized Robot Colonies. IEEE Trans. Evol. Comput. 13(4): 695-711 (2009) - [c18]Rehan O'Grady, Carlo Pinciroli, Roderich Groß, Anders Lyhne Christensen, Francesco Mondada, Michael Bonani, Marco Dorigo:
Swarm-Bots to the Rescue. ECAL (1) 2009: 165-172 - [c17]Roderich Groß, Stéphane Magnenat, Lorenz Küchler, Vasili Massaras, Michael Bonani, Francesco Mondada:
Towards an Autonomous Evolution of Non-biological Physical Organisms. ECAL (1) 2009: 173-180 - [c16]Roderich Groß, Stéphane Magnenat, Francesco Mondada:
Segregation in swarms of mobile robots based on the Brazil nut effect. IROS 2009: 4349-4356 - 2008
- [j7]Roderich Groß, Marco Dorigo:
Evolution of Solitary and Group Transport Behaviors for Autonomous Robots Capable of Self-Assembling. Adapt. Behav. 16(5): 285-305 (2008) - [j6]Roderich Groß:
Self-Assembling Robots. Künstliche Intell. 22(4): 61-63 (2008) - [j5]Roderich Gross, Marco Dorigo:
Self-Assembly at the Macroscopic Scale. Proc. IEEE 96(9): 1490-1508 (2008) - [c15]Roderich Groß, Shervin Nouyan, Michael Bonani, Francesco Mondada, Marco Dorigo:
Division of Labour in Self-organised Groups. SAB 2008: 426-436 - 2007
- [j4]Nigel R. Franks, James W. Hooper, Mike Gumn, Tamsyn H. Bridger, James A. R. Marshall, Roderich Groß:
Moving targets: collective decisions and flexible choices in house-hunting ants. Swarm Intell. 1(2): 81-94 (2007) - [c14]Rehan O'Grady, Roderich Groß, Anders Lyhne Christensen, Francesco Mondada, Michael Bonani, Marco Dorigo:
Performance benefits of self-assembly in a swarm-bot. IROS 2007: 2381-2387 - 2006
- [j3]Elio Tuci, Roderich Groß, Vito Trianni, Francesco Mondada, Michael Bonani, Marco Dorigo:
Cooperation through self-assembly in multi-robot systems. ACM Trans. Auton. Adapt. Syst. 1(2): 115-150 (2006) - [j2]Roderich Groß, Michael Bonani, Francesco Mondada, Marco Dorigo:
Autonomous Self-Assembly in Swarm-Bots. IEEE Trans. Robotics 22(6): 1115-1130 (2006) - [c13]Alexandre Campo, Shervin Nouyan, Mauro Birattari, Roderich Groß, Marco Dorigo:
Negotiation of Goal Direction for Cooperative Transport. ANTS Workshop 2006: 191-202 - [c12]Shervin Nouyan, Roderich Groß, Marco Dorigo, Michael Bonani, Francesco Mondada:
Group Transport Along a Robot Chain in a Self-Organised Robot Colony. IAS 2006: 433-442 - [c11]Roderich Groß, Marco Dorigo, Masaki Yamakita:
Self-assembly of Mobile Robots: From Swarm-bot to Super-mechano Colony. IAS 2006: 487-496 - [c10]Roderich Groß, Francesco Mondada, Marco Dorigo:
Transport of an Object by six pre-attached Robots interacting via Physical Links. ICRA 2006: 1317-1323 - [c9]Roderich Groß, Elio Tuci, Marco Dorigo, Michael Bonani, Francesco Mondada:
Object Transport by Modular Robots that Self-assemble. ICRA 2006: 2558-2564 - 2005
- [c8]Roderich Groß, Michael Bonani, Francesco Mondada, Marco Dorigo:
Autonomous Self-assembly in a Swarm-bot. AMiRE 2005: 314-322 - [c7]Rehan O'Grady, Roderich Groß, Francesco Mondada, Michael Bonani, Marco Dorigo:
Self-assembly on Demand in a Group of Physical Autonomous Mobile Robots Navigating Rough Terrain. ECAL 2005: 272-281 - 2004
- [j1]Marco Dorigo, Vito Trianni, Erol Sahin, Roderich Groß, Thomas Halva Labella, Gianluca Baldassarre, Stefano Nolfi, Jean-Louis Deneubourg, Francesco Mondada, Dario Floreano, Luca Maria Gambardella:
Evolving Self-Organizing Behaviors for a Swarm-Bot. Auton. Robots 17(2-3): 223-245 (2004) - [c6]Roderich Groß, Marco Dorigo:
Cooperative Transport of Objects of Different Shapes and Sizes. ANTS Workshop 2004: 106-117 - [c5]Roderich Groß, Marco Dorigo:
Group Transport of an Object to a Target That Only Some Group Members May Sense. PPSN 2004: 852-861 - [c4]Marco Dorigo, Elio Tuci, Roderich Groß, Vito Trianni, Thomas Halva Labella, Shervin Nouyan, Christos Ampatzis, Jean-Louis Deneubourg, Gianluca Baldassarre, Stefano Nolfi, Francesco Mondada, Dario Floreano, Luca Maria Gambardella:
The SWARM-BOTS Project. Swarm Robotics 2004: 31-44 - 2003
- [c3]Roderich Groß, Marco Dorigo:
Evolving a Cooperative Transport Behavior for Two Simple Robots. Artificial Evolution 2003: 305-316 - [c2]Vito Trianni, Roderich Groß, Thomas Halva Labella, Erol Sahin, Marco Dorigo:
Evolving Aggregation Behaviors in a Swarm of Robots. ECAL 2003: 865-874 - 2002
- [c1]Roderich Groß, Keno Albrecht, Wolfgang Kantschik, Wolfgang Banzhaf:
Evolving Chess Playing Programs. GECCO 2002: 740-747
Coauthor Index
manage site settings
To protect your privacy, all features that rely on external API calls from your browser are turned off by default. You need to opt-in for them to become active. All settings here will be stored as cookies with your web browser. For more information see our F.A.Q.
Unpaywalled article links
Add open access links from to the list of external document links (if available).
Privacy notice: By enabling the option above, your browser will contact the API of unpaywall.org to load hyperlinks to open access articles. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Unpaywall privacy policy.
Archived links via Wayback Machine
For web page which are no longer available, try to retrieve content from the of the Internet Archive (if available).
Privacy notice: By enabling the option above, your browser will contact the API of archive.org to check for archived content of web pages that are no longer available. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Internet Archive privacy policy.
Reference lists
Add a list of references from , , and to record detail pages.
load references from crossref.org and opencitations.net
Privacy notice: By enabling the option above, your browser will contact the APIs of crossref.org, opencitations.net, and semanticscholar.org to load article reference information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the Crossref privacy policy and the OpenCitations privacy policy, as well as the AI2 Privacy Policy covering Semantic Scholar.
Citation data
Add a list of citing articles from and to record detail pages.
load citations from opencitations.net
Privacy notice: By enabling the option above, your browser will contact the API of opencitations.net and semanticscholar.org to load citation information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the OpenCitations privacy policy as well as the AI2 Privacy Policy covering Semantic Scholar.
OpenAlex data
Load additional information about publications from .
Privacy notice: By enabling the option above, your browser will contact the API of openalex.org to load additional information. Although we do not have any reason to believe that your call will be tracked, we do not have any control over how the remote server uses your data. So please proceed with care and consider checking the information given by OpenAlex.
last updated on 2025-01-21 00:00 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint