default search action
Andrew Philippides
Person information
- affiliation: University of Sussex, AI Research Group, School of Engineering and Informatics, Brighton, UK
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [j24]Fabian Steinbeck, Efstathios Kagioulis, Alex Dewar, Andrew Philippides, Thomas Nowotny, Paul Graham:
Familiarity-taxis: A bilateral approach to view-based snapshot navigation. Adapt. Behav. 32(5): 407-420 (2024) - [c38]Efstathios Kagioulis, James C. Knight, Andrew Philippides, Anindya Ghosh, Amany Amin, Paul Graham, Thomas Nowotny:
Efficient Visual Navigation with Bio-inspired Route Learning Algorithms. SAB 2024: 3-14 - [c37]Thomas Misiek, Andrew Philippides, James C. Knight:
Insect-Based Navigation Model Allows Efficient Long-Range Visual Homing in a 3D Simulated Environment. SAB 2024: 15-26 - 2023
- [c36]Georgios Voulgaris, Andy Philippides, Jonathan Dolley, Jeremy Reffin, Fiona Marshall, Novi Quadrianto:
Seasonal Domain Shift in the Global South: Dataset and Deep Features Analysis. CVPR Workshops 2023: 2116-2124 - [c35]Georgios Voulgaris, Andrew Philippides, Novi Quadrianto:
Water Physics Aware Semantic Segmentation through Texture-Biased U-Net Architectures. IGARSS 2023: 5435-5438 - [i5]Dexter R. Shepherd, Phil Husbands, Andy Philippides, Chris A. Johnson:
Slip Detection and Surface Prediction Through Bio-Inspired Tactile Feedback. CoRR abs/2310.08192 (2023) - [i4]Nam Ho Koh, Doran Amos, Paul Graham, Andrew Philippides:
VidereX: A Navigational Application inspired by ants. CoRR abs/2312.03000 (2023) - 2022
- [j23]Fabian Steinbeck, Thomas Nowotny, Andy Philippides, Paul Graham:
Production of adaptive movement patterns via an insect inspired spiking neural network central pattern generator. Frontiers Comput. Neurosci. 16 (2022) - [j22]Anil Özdemir, Mark Scerri, Andrew B. Barron, Andrew Philippides, Michael Mangan, Eleni Vasilaki, Luca Manneschi:
EchoVPR: Echo State Networks for Visual Place Recognition. IEEE Robotics Autom. Lett. 7(2): 4520-4527 (2022) - [c34]Georgios Voulgaris, Andrew Philippides, Novi Quadrianto:
Deep Learning Robustness to Domain Shifts During Seasonal Variations. IGARSS 2022: 417-420 - [i3]Sotirios Athanasoulias, Andy Philippides:
Autonomous Visual Navigation A Biologically Inspired Approach. CoRR abs/2209.09663 (2022) - 2021
- [j21]Phil Husbands, YoonSik Shim, Michael Garvie, Alex Dewar, Norbert Domcsek, Paul Graham, James C. Knight, Thomas Nowotny, Andrew Philippides:
Recent advances in evolutionary and bio-inspired adaptive robotics: Exploiting embodied dynamics. Appl. Intell. 51(9): 6467-6496 (2021) - [i2]Anil Özdemir, Andrew B. Barron, Andrew Philippides, Michael Mangan, Eleni Vasilaki, Luca Manneschi:
EchoVPR: Echo State Networks for Visual Place Recognition. CoRR abs/2110.05572 (2021) - 2020
- [j20]Michael Garvie, Ittai Flascher, Andrew Philippides, Adrian Thompson, Phil Husbands:
Evolved Transistor Array Robot Controllers. Evol. Comput. 28(4): 677-708 (2020) - [j19]Nicholas Baron, Andrew Philippides, Nicolas Rojas:
On the False Positives and False Negatives of the Jacobian Matrix in Kinematically Redundant Parallel Mechanisms. IEEE Trans. Robotics 36(3): 951-958 (2020) - [c33]Alex Dewar, Paul Graham, Thomas Nowotny, Andrew Philippides:
Exploring the robustness of insect-inspired visual navigation for flying robots. ALIFE 2020: 668-677 - [c32]Efstathios Kagioulis, Andrew Philippides, Paul Graham, James C. Knight, Thomas Nowotny:
Insect Inspired View Based Navigation Exploiting Temporal Information. Living Machines 2020: 204-216 - [c31]Stefan Meyer, Thomas Nowotny, Paul Graham, Alex Dewar, Andrew Philippides:
Snapshot Navigation in the Wavelet Domain. Living Machines 2020: 245-256 - [c30]Fabian Steinbeck, Paul Graham, Thomas Nowotny, Andrew Philippides:
Can Small Scale Search Behaviours Enhance Large-Scale Navigation? Living Machines 2020: 338-341
2010 – 2019
- 2019
- [c29]James C. Knight, Daniil Sakhapov, Norbert Domcsek, Alex D. M. Dewar, Paul Graham, Thomas Nowotny, Andrew Philippides:
Insect-Inspired Visual Navigation On-Board an Autonomous Robot: Real-World Routes Encoded in a Single Layer Network. ALIFE 2019: 60-67 - [c28]Kaan Akinci, Andrew Philippides:
Evolving Recurrent Neural Network Controllers by Incremental Fitness Shaping. ALIFE 2019: 416-423 - 2018
- [c27]Nicholas Baron, Andrew Philippides, Nicolas Rojas:
A Geometric Method of Singularity Avoidance for Kinematically Redundant Planar Parallel Robots. ARK 2018: 187-194 - 2017
- [j18]Alex D. M. Dewar, Antoine Wystrach, Andrew Philippides, Paul Graham:
Neural coding in the visual system of Drosophila melanogaster: How do small neural populations support visually guided behaviours? PLoS Comput. Biol. 13(10) (2017) - [c26]Christopher Walker, Paul Graham, Andrew Philippides:
Using Deep Autoencoders to Investigate Image Matching in Visual Navigation. Living Machines 2017: 465-474 - 2016
- [j17]Chris A. Johnson, Andrew Philippides, Philip Husbands:
Active Shape Discrimination with Compliant Bodies as Reservoir Computers. Artif. Life 22(2): 241-268 (2016) - [j16]YoonSik Shim, Andrew Philippides, Kevin Staras, Phil Husbands:
Unsupervised Learning in an Ensemble of Spiking Neural Networks Mediated by ITDP. PLoS Comput. Biol. 12(10) (2016) - [c25]Andrew Philippides, Nathan Steadman, Alex Dewar, Christopher Walker, Paul Graham:
Insect-Inspired Visual Navigation for Flying Robots. Living Machines 2016: 263-274 - [i1]Isabella von Sivers, Anne Templeton, F. Künzner, Gerta Köster, John Drury, Andrew Philippides, Tobias Neckel, Hans-Joachim Bungartz:
Modelling social identification and helping in evacuation simulation. CoRR abs/1602.00805 (2016) - 2015
- [j15]Alex D. M. Dewar, Antoine Wystrach, Paul Graham, Andrew Philippides:
Navigation-specific neural coding in the visual system of Drosophila. Biosyst. 136: 120-127 (2015) - [c24]Terri Roberts, Kevin Staras, Philip Husbands, Andrew Philippides:
Entraining and Copying of Temporal Correlations in Dissociated Cultured Neurons. Living Machines 2015: 223-226 - 2014
- [j14]Alex Dewar, Andrew Philippides, Paul Graham:
What is the relationship between visual environment and the form of ant learning-walks? An in silico investigation of insect navigation. Adapt. Behav. 22(3): 163-179 (2014) - [j13]Nicholas Tomko, Inman Harvey, Nathaniel Virgo, Andrew Philippides:
Many Hands Make Light Work: Further Studies in Group Evolution. Artif. Life 20(1): 163-181 (2014) - [j12]Robert De Caux, Christopher Smith, Dominic Kniveton, Richard Black, Andrew Philippides:
Dynamic, small-world social network generation through local agent interactions. Complex. 19(6): 44-53 (2014) - [c23]Chris A. Johnson, Andrew Philippides, Philip Husbands:
Active Shape Discrimination with Physical Reservoir Computers. ALIFE 2014: 176-183 - [r1]Michael O'Shea, Phil Husbands, Andrew Philippides:
Nitric Oxide Neuromodulation. Encyclopedia of Computational Neuroscience 2014 - 2013
- [c22]Alexander W. Churchill, Phil Husbands, Andrew Philippides:
Multi-objective tool sequence and parameter optimization for rough milling applications. IEEE Congress on Evolutionary Computation 2013: 1475-1482 - [c21]Alexander W. Churchill, Phil Husbands, Andrew Philippides:
Tool sequence optimization using synchronous and asynchronous parallel multi-objective evolutionary algorithms with heterogeneous evaluations. IEEE Congress on Evolutionary Computation 2013: 2924-2931 - [c20]Andrew Philippides, Bart Baddeley, Phil Husbands, Paul Graham:
A Situated and Embodied Model of Ant Route Navigation. ECAL 2013: 1007-1008 - [c19]Paul Calcraft, Phil Husbands, Andrew Philippides:
An Environmental Model of Self-Compatibility Transitions in the Solanaceae Plant Family. ECAL 2013: 1107-1113 - [c18]Alexander W. Churchill, Phil Husbands, Andrew Philippides:
Multi-objectivization of the Tool Selection Problem on a Budget of Evaluations. EMO 2013: 600-614 - [c17]Alexander Wainwright Churchill, Phil Husbands, Andrew Philippides:
Tool sequence optimisation using preferential multi-objective search. GECCO (Companion) 2013: 181-182 - [c16]Andrew Philippides, Alex Dewar, Antoine Wystrach, Michael Mangan, Paul Graham:
How Active Vision Facilitates Familiarity-Based Homing. Living Machines 2013: 427-430 - 2012
- [j11]Bart Baddeley, Paul Graham, Philip Husbands, Andrew Philippides:
A Model of Ant Route Navigation Driven by Scene Familiarity. PLoS Comput. Biol. 8(1) (2012) - [c15]Alexander W. Churchill, Phil Husbands, Andrew Philippides:
Metaheuristic approaches to tool selection optimisation. GECCO 2012: 1079-1086 - [c14]Andrew Philippides, Bart Baddeley, Philip Husbands, Paul Graham:
How Can Embodiment Simplify the Problem of View-Based Navigation? Living Machines 2012: 216-227 - 2011
- [j10]Bart Baddeley, Paul Graham, Andrew Philippides, Philip Husbands:
Holistic visual encoding of ant-like routes: Navigation without waypoints. Adapt. Behav. 19(1): 3-15 (2011) - [c13]Nicholas Tomko, Inman Harvey, Andrew Philippides, Nathaniel Virgo:
Many hands make light work: Group evolution and the emergent division of labour. ECAL 2011: 805-812 - [c12]Bart Baddeley, Paul Graham, Andrew Philippides, Philip Husbands:
Models of Visually Guided Routes in Ants: Embodiment Simplifies Route Acquisition. ICIRA (2) 2011: 75-84 - 2010
- [j9]Philip Husbands, Andrew Philippides, Patrícia Amâncio Vargas, Christopher L. Buckley, Peter Fine, Ezequiel A. Di Paolo, Michael O'Shea:
Spatial, temporal, and modulatory factors affecting GasNet evolvability in a visually guided robotics task. Complex. 16(2): 35-44 (2010) - [j8]Daniel Bush, Andrew Philippides, Phil Husbands, Michael O'Shea:
Spike-timing dependent plasticity and the cognitive map. Frontiers Comput. Neurosci. 4: 142 (2010) - [j7]Daniel Bush, Andrew Philippides, Phil Husbands, Michael O'Shea:
Reconciling the STDP and BCM Models of Synaptic Plasticity in a Spiking Recurrent Neural Network. Neural Comput. 22(8): 2059-2085 (2010) - [j6]Daniel Bush, Andrew Philippides, Phil Husbands, Michael O'Shea:
Dual Coding with STDP in a Spiking Recurrent Neural Network Model of the Hippocampus. PLoS Comput. Biol. 6(7) (2010)
2000 – 2009
- 2009
- [j5]Bartholomew Baddeley, Andrew Philippides, Paul Graham, Natalie Hempel de Ibarra, Thomas Collett, Phil Husbands:
What can be learnt from analysing insect orientation flights using probabilistic SLAM? Biol. Cybern. 101(3): 169-182 (2009) - 2008
- [c11]Edgar Bermudez Contreras, Andrew Philippides, Anil K. Seth:
Movement Strategies for Learning in Visual Recognition. ALIFE 2008: 41-48 - [c10]Daniel Bush, Andrew Philippides, Phil Husbands, Michael O'Shea:
Theta Phase Coding and Acetylcholine Modulation in a Spiking Neural Network. SAB 2008: 159-168 - [c9]Lincoln Smith, Andrew Philippides, Paul Graham, Phil Husbands:
Linked Local Visual Navigation and Robustness to Motor Noise and Route Displacement. SAB 2008: 179-188 - 2007
- [j4]Lincoln Smith, Andrew Philippides, Paul Graham, Bart Baddeley, Philip Husbands:
Linked Local Navigation for Visual Route Guidance. Adapt. Behav. 15(3): 257-271 (2007) - [c8]Bart Baddeley, Andrew Philippides:
Improving Agent Localisation Through Stereotypical Motion. ECAL 2007: 335-344 - [c7]Bart Baddeley, Andrew Philippides:
Bee SLAM: a probabilistic framework for studying orientation flights in bees and wasps. GECCO 2007: 334 - 2006
- [c6]Lincoln Smith, Andrew Philippides, Phil Husbands:
Navigation in Large-Scale Environments Using an Augmented Model of Visual Homing. SAB 2006: 251-262 - [c5]Daniel Bush, Andrew Philippides, Phil Husbands, Michael O'Shea:
Investigating STDP and LTP in a Spiking Neural Network. SAB 2006: 323-334 - [c4]Sven Magg, Andrew Philippides:
GasNets and CTRNNs - A Comparison in Terms of Evolvability. SAB 2006: 461-472 - [c3]Peter Fine, Ezequiel A. Di Paolo, Andrew Philippides:
Spatially Constrained Networks and the Evolution of Modular Control Systems. SAB 2006: 546-557 - 2005
- [j3]Andrew Philippides, Phil Husbands, Tom Smith, Michael O'Shea:
Flexible Couplings: Diffusing Neuromodulators and Adaptive Robotics. Artif. Life 11(1-2): 139-160 (2005) - 2002
- [j2]Tom Smith, Phil Husbands, Andrew Philippides, Michael O'Shea:
Neuronal Plasticity and Temporal Adaptivity: GasNet Robot Control Networks. Adapt. Behav. 10(3-4): 161-183 (2002) - [c2]Tom Smith, Andrew Philippides, Phil Husbands, Michael O'Shea:
Neutrality and ruggedness in robot landscapes. IEEE Congress on Evolutionary Computation 2002: 1348-1353 - 2001
- [j1]Phil Husbands, Andrew Philippides, Tom Smith, Michael O'Shea:
Volume signalling in real and robot nervous systems. Theory Biosci. 120(3-4): 253-269 (2001) - [c1]Phil Husbands, Andrew Philippides, Tom Smith, Michael O'Shea:
The Shifting Network: Volume Signalling in Real and Robot Nervous Systems. ECAL 2001: 23-36
Coauthor Index
aka: Philip Husbands
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 2024-10-07 22:09 CEST by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint