default search action
Karol Desnos
Person information
Refine list
refinements active!
zoomed in on ?? of ?? records
view refined list in
export refined list as
2020 – today
- 2024
- [b1]Karol Desnos:
Design Automation and Multi-Objective Optimizations for High-Performance Embedded Software. (Automatisation de la conception et optimisations multi-objective pour logiciel embarqués à haute performance). University of Rennes 1, France, 2024 - [j16]Alban Marie, Karol Desnos, Alexandre Mercat, Luce Morin, Jarno Vanne, Lu Zhang:
Advanced fine-tuning procedures to enhance DNN robustness in visual coding for machines. EURASIP J. Image Video Process. 2024(1): 31 (2024) - [j15]Ophélie Renaud, Hugo Miomandre, Karol Desnos, Jean-François Nezan:
Automated level-based clustering of dataflow actors for controlled scheduling complexity. J. Syst. Archit. 154: 103217 (2024) - [j14]Alice Chillet, Robin Gerzaguet, Karol Desnos, Matthieu Gautier, Elena Simona Lohan, Erwan Nogues, Mikko Valkama:
Understanding Radio Frequency Fingerprint Identification With RiFyFi Virtual Databases. IEEE Open J. Commun. Soc. 5: 3735-3752 (2024) - [c49]Sunrise Wang, Nicolas Gac, Hugo Miomandre, Jean-François Nezan, Karol Desnos, François Orieux:
An Initial Framework for Prototyping Radio-Interferometric Imaging Pipelines. DASIP 2024: 56-67 - [c48]Ophélie Renaud, Karol Desnos, Erwan Raffin, Jean-François Nezan:
Multicore and Network Topology Codesign for Pareto-Optimal Multinode Architecture. EUSIPCO 2024: 701-705 - [c47]Alice Chillet, Robin Gerzaguet, Karol Desnos, Matthieu Gautier, Elena Simona Lohan, Erwan Nogues, Mikko Valkama:
How to Design a Channel-Resilient Database for Radio Frequency Fingerprint Identification? ICC 2024: 1655-1660 - [c46]Quentin Vacher, Nicolas Beuve, Paul Allaire, Thibaut Marty, Mickaël Dardaillon, Karol Desnos:
Hybrid Genetic Programming and Deep Reinforcement Learning for Low-Complexity Robot Arm Trajectory Planning. IJCCI 2024: 139-150 - [c45]Hubert Szolc, Karol Desnos, Tomasz Kryjak:
Tangled Program Graphs as an alternative to DRL-based control algorithms for UAVs. SPA 2024: 36-41 - [i2]Hubert Szolc, Karol Desnos, Tomasz Kryjak:
Tangled Program Graphs as an alternative to DRL-based control algorithms for UAVs. CoRR abs/2411.05586 (2024) - 2023
- [c44]Ophélie Renaud, Dylan Gageot, Karol Desnos, Jean-François Nezan:
SCAPE: HW-Aware Clustering of Dataflow Actors for Tunable Scheduling Complexity. DASIP 2023: 3-14 - [c43]Ophélie Renaud, Naouel Haggui, Karol Desnos, Jean-François Nezan:
Automated Clustering and Pipelining of Dataflow Actors for Controlled Scheduling Complexity. EUSIPCO 2023: 1698-1702 - [c42]Alban Marie, Karol Desnos, Chen Fu, Jinjia Zhou, Luce Morin, Lu Zhang:
Towards Machine Perception Aware Image Quality Assessment. MMSP 2023: 1-6 - [c41]Alice Chillet, Baptiste Boyer, Robin Gerzaguet, Karol Desnos, Matthieu Gautier:
Tangled Program Graph for Radio-Frequency Fingerprint Identification. PIMRC 2023: 1-7 - [c40]Alban Marie, Karol Desnos, Luce Morin, Lu Zhang:
Evaluation of Image Quality Assessment Metrics for Semantic Segmentation in a Machine-to-Machine Communication Scenario. QoMEX 2023: 1-6 - 2022
- [j13]Nicolas Sourbier, Karol Desnos, Thomas Guyet, Frédéric Majorczyk, Olivier Gesny, Maxime Pelcat:
SECURE-GEGELATI Always-On Intrusion Detection through GEGELATI Lightweight Tangled Program Graphs. J. Signal Process. Syst. 94(7): 753-770 (2022) - [c39]Alexandre Honorat, Thomas Bourgoin, Hugo Miomandre, Karol Desnos, Daniel Ménard, Jean-François Nezan:
Influence of Dataflow Graph Moldable Parameters on Optimization Criteria. DASIP 2022: 83-95 - [c38]Alban Marie, Karol Desnos, Luce Morin, Lu Zhang:
Expert training: Enhancing AI resilience to image coding artifacts. Image Processing: Algorithms and Systems 2022: 1-6 - [c37]Alban Marie, Karol Desnos, Luce Morin, Lu Zhang:
Video Coding for Machines: Large-Scale Evaluation of Deep Neural Networks Robustness to Compression Artifacts for Semantic Segmentation. MMSP 2022: 1-6 - [c36]Karol Desnos, Thomas Bourgoin, Mickaël Dardaillon, Nicolas Sourbier, Olivier Gesny, Maxime Pelcat:
Ultra-Fast Machine Learning Inference through C Code Generation for Tangled Program Graphs. SiPS 2022: 1-6 - [e1]Karol Desnos, Sergio A. Pertuz:
Design and Architecture for Signal and Image Processing - 15th International Workshop, DASIP 2022, Budapest, Hungary, June 20-22, 2022, Proceedings. Lecture Notes in Computer Science 13425, Springer 2022, ISBN 978-3-031-12747-2 [contents] - 2021
- [c35]Karol Desnos, Nicolas Sourbier, Pierre-Yves Raumer, Olivier Gesny, Maxime Pelcat:
Gegelati: Lightweight Artificial Intelligence through Generic and Evolvable Tangled Program Graphs. DASIP 2021: 35-43 - 2020
- [j12]Yaesop Lee, Yanzhou Liu, Karol Desnos, Lee Barford, Shuvra S. Bhattacharyya:
Passive-Active Flowgraphs for Efficient Modeling and Design of Signal Processing Systems. J. Signal Process. Syst. 92(10): 1133-1151 (2020) - [c34]Justine Bonnot, Daniel Ménard, Karol Desnos:
Fast Kriging-based Error Evaluation for Approximate Computing Systems. DATE 2020: 1384-1389 - [c33]Alexandre Honorat, Karol Desnos, Shuvra S. Bhattacharyya, Jean-François Nezan:
Scheduling of Synchronous Dataflow Graphs with Partially Periodic Real-Time Constraints. RTNS 2020: 22-33 - [c32]Alexandre Honorat, Karol Desnos, Mickaël Dardaillon, Jean-François Nezan:
A Fast Heuristic to Pipeline SDF Graphs. SAMOS 2020: 139-151 - [i1]Karol Desnos, Nicolas Sourbier, Pierre-Yves Raumer, Olivier Gesny, Maxime Pelcat:
Gegelati: Lightweight Artificial Intelligence through Generic and Evolvable Tangled Program Graphs. CoRR abs/2012.08296 (2020)
2010 – 2019
- 2019
- [j11]Daniel Madroñal, Florian Arrestier, Jaime Sancho, Antoine Morvan, Raquel Lazcano, Karol Desnos, Rubén Salvador, Daniel Ménard, Eduardo Juárez Martínez, César Sanz:
PAPIFY: Automatic Instrumentation and Monitoring of Dynamic Dataflow Applications Based on PAPI. IEEE Access 7: 111801-111812 (2019) - [j10]Claudio Rubattu, Francesca Palumbo, Carlo Sau, Rubén Salvador, Jocelyn Sérot, Karol Desnos, Luigi Raffo, Maxime Pelcat:
Dataflow-Functional High-Level Synthesis for Coarse-Grained Reconfigurable Accelerators. IEEE Embed. Syst. Lett. 11(3): 69-72 (2019) - [j9]Leonardo Suriano, Florian Arrestier, Alfonso Rodríguez, Julien Heulot, Karol Desnos, Maxime Pelcat, Eduardo de la Torre:
DAMHSE: Programming heterogeneous MPSoCs with hardware acceleration using dataflow-based design space exploration and automated rapid prototyping. Microprocess. Microsystems 71 (2019) - [j8]Florian Arrestier, Karol Desnos, Eduardo Juárez, Daniel Ménard:
Numerical Representation of Directed Acyclic Graphs for Efficient Dataflow Embedded Resource Allocation. ACM Trans. Embed. Comput. Syst. 18(5s): 101:1-101:22 (2019) - [c31]Francesca Palumbo, Tiziana Fanni, Carlo Sau, Luca Pulina, Luigi Raffo, Michael Masin, Evgeny Shindin, Pablo Sanchez de Rojas, Karol Desnos, Maxime Pelcat, Alfonso Rodríguez, Eduardo Juárez, Francesco Regazzoni, Giuseppe Meloni, Katiuscia Zedda, Hans Myrhaug, Leszek Kaliciak, Joost Adriaanse, Julio de Oliveira Filho, Pablo Muñoz, Antonella Toffetti:
CERBERO: Cross-layer modEl-based fRamework for multi-oBjective dEsign of reconfigurable systems in unceRtain hybRid envirOnments: Invited paper: CERBERO teams from UniSS, UniCA, IBM Research, TASE, INSA-Rennes, UPM, USI, Abinsula, AmbieSense, TNO, S&T, CRF. CF 2019: 320-325 - [c30]Justine Bonnot, Karol Desnos, Daniel Ménard:
Accuracy Evaluation Based on Simulation for Finite Precision Systems Using Inferential Statistics. ICASSP 2019: 1508-1512 - [c29]Alexandre Honorat, Karol Desnos, Maxime Pelcat, Jean-François Nezan:
Modeling Nested for Loops with Explicit Parallelism in Synchronous DataFlow Graphs. SAMOS 2019: 269-280 - [c28]Francesca Palumbo, Tiziana Fanni, Carlo Sau, Alfonso Rodríguez, Daniel Madroñal, Karol Desnos, Antoine Morvan, Maxime Pelcat, Claudio Rubattu, Raquel Lazcano, Luigi Raffo, Eduardo de la Torre, Eduardo Juárez, César Sanz, Pablo Sanchez de Rojas:
Hardware/Software Self-adaptation in CPS: The CERBERO Project Approach. SAMOS 2019: 416-428 - 2018
- [j7]Maxime Pelcat, Alexandre Mercat, Karol Desnos, Luca Maggiani, Yanzhou Liu, Julien Heulot, Jean-François Nezan, Wassim Hamidouche, Daniel Ménard, Shuvra S. Bhattacharyya:
Reproducible Evaluation of System Efficiency With a Model of Architecture: From Theory to Practice. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 37(10): 2050-2063 (2018) - [j6]Manel Ammar, Mouna Baklouti, Maxime Pelcat, Karol Desnos, Mohamed Abid:
Comparing Three Clustering-based Scheduling Methods for Energy-Aware Rapid Design of MP2SoCs. J. Signal Process. Syst. 90(4): 537-570 (2018) - [c27]Daniel Madroñal, Antoine Morvan, Raquel Lazcano, Rubén Salvador, Karol Desnos, Eduardo Juárez Martínez, César Sanz:
Automatic instrumentation of dataflow applications using PAPI. CF 2018: 232-235 - [c26]Justine Bonnot, Vincent Camus, Karol Desnos, Daniel Ménard:
Cassis: Characterization with Adaptive Sample- Size Inferential Statistics Applied to Inexact Circuits. EUSIPCO 2018: 677-681 - [c25]Justine Bonnot, Karol Desnos, Maxime Pelcat, Daniel Ménard:
A Fast and Fuzzy Functional Simulator of Inexact Arithmetic Operators for Approximate Computing Systems. ACM Great Lakes Symposium on VLSI 2018: 195-200 - [c24]Hugo Miomandre, Julien Hascoët, Karol Desnos, Kevin J. M. Martin, Benoît Dupont de Dinechin, Jean-François Nezan:
Embedded Runtime for Reconfigurable Dataflow Graphs on Manycore Architectures. PARMA-DITAM@HiPEAC 2018: 51-56 - [c23]Julien Hascoet, Benoît Dupont de Dinechin, Karol Desnos, Jean-François Nezan:
A Distributed Framework for Low-Latency OpenVX over the RDMA NoC of a Clustered Manycore. HPEC 2018: 1-7 - [c22]Justine Bonnot, Karol Desnos, Daniel Ménard:
Stochastic Modeling to Accelerate Approximate Operators Simulation. ISCAS 2018: 1-5 - [c21]Andrea Enrici, Julien Lallet, Renaud Pacalet, Ludovic Apvrille, Karol Desnos, Imran Latif:
Model-Based Programming for Multi-processor Platforms with TTool/DIPLODOCUS and OMC. MODELSWARD (Revised Selected Papers) 2018: 56-81 - [c20]Hergys Rexha, Sébastien Lafond, Karol Desnos:
Energy-Efficient Actor Execution for SDF Application on Heterogeneous Architectures. PDP 2018: 486-493 - [c19]Florian Arrestier, Karol Desnos, Maxime Pelcat, Julien Heulot, Eduardo Juárez, Daniel Ménard:
Delays and states in dataflow models of computation. SAMOS 2018: 47-54 - [c18]Justine Bonnot, Karol Desnos, Daniel Ménard:
Algorithm-level approximation for fast (or not) embedded stereovision algorithm. SAMOS 2018: 139-145 - 2017
- [j5]Raquel Lazcano, Daniel Madroñal, Rubén Salvador, Karol Desnos, Maxime Pelcat, Raúl Guerra, Himar Fabelo, Samuel Ortega, Sebastián López, Gustavo M. Callicó, Eduardo Juárez Martínez, César Sanz:
Porting a PCA-based hyperspectral image dimensionality reduction algorithm for brain cancer detection on a manycore architecture. J. Syst. Archit. 77: 101-111 (2017) - [j4]Alexandre Mercat, Justine Bonnot, Maxime Pelcat, Karol Desnos, Wassim Hamidouche, Daniel Ménard:
Smart search space reduction for approximate computing: A low energy HEVC encoder case study. J. Syst. Archit. 80: 56-67 (2017) - [c17]Julien Hascoet, Karol Desnos, Jean-François Nezan, Benoît Dupont de Dinechin:
Hierarchical Dataflow Model for efficient programming of clustered manycore processors. ASAP 2017: 137-142 - [c16]Hamza Deroui, Karol Desnos, Jean-François Nezan, Alix Munier Kordon:
Throughput evaluation of DSP applications based on hierarchical dataflow models. ISCAS 2017: 1-4 - [c15]Leonardo Suriano, Alfonso Rodríguez, Karol Desnos, Maxime Pelcat, Eduardo de la Torre:
Analysis of a heterogeneous multi-core, multi-hw-accelerator-based system designed using PREESM and SDSoC. ReCoSoC 2017: 1-7 - [c14]Hamza Deroui, Karol Desnos, Jean-François Nezan, Alix Munier Kordon:
Relaxed subgraph execution model for the throughput evaluation of IBSDF graphs. SAMOS 2017: 213-220 - [c13]Georgios Georgakarakos, Sudeep Kanur, Johan Lilius, Karol Desnos:
Task-based execution of synchronous dataflow graphs for scalable multicore computing. SiPS 2017: 1-6 - 2016
- [j3]Karol Desnos, Maxime Pelcat, Jean-François Nezan, Slaheddine Aridhi:
On Memory Reuse Between Inputs and Outputs of Dataflow Actors. ACM Trans. Embed. Comput. Syst. 15(2): 30:1-30:25 (2016) - [j2]Zheng Zhou, William Plishker, Shuvra S. Bhattacharyya, Karol Desnos, Maxime Pelcat, Jean-François Nezan:
Scheduling of Parallelized Synchronous Dataflow Actors for Multicore Signal Processing. J. Signal Process. Syst. 83(3): 309-328 (2016) - [c12]Manel Ammar, Mouna Baklouti, Maxime Pelcat, Karol Desnos, Mohamed Abid:
On Exploiting Energy-Aware Scheduling Algorithms for MDE-Based Design Space Exploration of MP2SoC. PDP 2016: 643-650 - [c11]Karol Desnos, Maxime Pelcat, Jean-François Nezan, Slaheddine Aridhi:
Distributed Memory Allocation Technique for Synchronous Dataflow Graphs. SiPS 2016: 45-50 - [c10]Maxime Pelcat, Karol Desnos, Luca Maggiani, Yanzhou Liu, Julien Heulot, Jean-François Nezan, Shuvra S. Bhattacharyya:
Models of Architecture: Reproducible Efficiency Evaluation for Signal Processing Systems. SiPS 2016: 121-126 - [c9]Manel Ammar, Mouna Baklouti, Maxime Pelcat, Karol Desnos, Mohamed Abid:
Off-Line DVFS Integration in MDE-Based Design Space Exploration Framework for MP2SoC Systems. WETICE 2016: 160-165 - 2015
- [j1]Karol Desnos, Maxime Pelcat, Jean-François Nezan, Slaheddine Aridhi:
Memory Analysis and Optimized Allocation of Dataflow Applications on Shared-Memory MPSoCs - In-Depth Study of a Computer Vision Application. J. Signal Process. Syst. 80(1): 19-37 (2015) - [c8]Karol Desnos, Maxime Pelcat, Jean-François Nezan, Slaheddine Aridhi:
Buffer merging technique for minimizing memory footprints of Synchronous Dataflow specifications. ICASSP 2015: 1111-1115 - [c7]Manel Ammar, Mouna Baklouti, Maxime Pelcat, Karol Desnos, Mohamed Abid:
Automatic Generation of S-LAM Descriptions from UML/MARTE for the DSE of Massively Parallel Embedded Systems. SNPD (revised selected papers) 2015: 195-211 - 2014
- [c6]Manel Ammar, Mouna Baklouti, Maxime Pelcat, Karol Desnos, Mohamed Abid:
MARTE to ΠSDF transformation for data-intensive applications analysis. DASIP 2014: 1-8 - [c5]Karol Desnos, Safwan El Assad, Aurore Arlicot, Maxime Pelcat, Daniel Ménard:
Efficient multicore implementation of an advanced generator of discrete chaotic sequences. ICITST 2014: 31-36 - 2013
- [c4]Zheng Zhou, Karol Desnos, Maxime Pelcat, Jean-François Nezan, William Plishker, Shuvra S. Bhattacharyya:
Scheduling of parallelized synchronous dataflow actors. ISSoC 2013: 1-10 - [c3]Karol Desnos, Maxime Pelcat, Jean-François Nezan, Shuvra S. Bhattacharyya, Slaheddine Aridhi:
PiMM: Parameterized and Interfaced dataflow Meta-Model for MPSoCs runtime reconfiguration. ICSAMOS 2013: 41-48 - 2012
- [c2]Julien Heulot, Karol Desnos, Jean-François Nezan, Maxime Pelcat, Mickaël Raulet, Hervé Yviquel, P.-L. Lagalaye, Jean-Christophe Le Lann:
An experimental toolchain based on high-level dataflow models of computation for heterogeneous MPSoC. DASIP 2012: 1-2 - [c1]Karol Desnos, Maxime Pelcat, Jean-François Nezan, Slaheddine Aridhi:
Memory bounds for the distributed execution of a hierarchical Synchronous Data-Flow graph. ICSAMOS 2012: 160-167
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 2025-01-06 01:57 CET by the dblp team
all metadata released as open data under CC0 1.0 license
see also: Terms of Use | Privacy Policy | Imprint