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Bio
My main research focuses on methods for constructing mission-critical and therefore necessarily fault and intrusion tolerant, reliable and resilient computing systems for use in space. In particular, I am interested in what is known as New Space, that is, mechanisms and construction principles that allow us to use highly performant ground-based systems on board of spacecrafts with minimal to no need for radiation hardened, costly, special-purpose solutions.
In my RecAV research project (CBK PAN, Astri Polska, Airbus Defense & Space), I researched how mission-critical parts of a system can heal themselves by leveraging the dynamic partial reconfiguration capabilities of modern FPGA devices. I constructed an experimental system setup of reconfigurable avionics to show how the requirements of the Ariane 5 launcher and of observation satellites can be met. Among other things, dynamic reconfiguration enabled the co-location of less critical functionality and the temporal dispatching of this functionality on the same tile, which lead to a significant reduction of the missions overall computational resource demand and thus cost.
In BRITE (CBK PAN, University of Toronto, University of Graz, Nicolaus Copernicus Astronomical Center), I designed and contributed to the construction of a constellation of 6 micro-satellites, capable of observing bright star variations (e.g., star quakes). My responsibility was the development, implementation and testing of all on-board computer tasks (housekeeping, attitude control, data processing).
I contributed to the ESA flagship mission PROBA-3 (CBK PAN, ESA, Center Spatial de Liege, 4 companies in Poland) with instrument data-processing and power-distribution systems (project size: 2.8 MEUR). As technical and project manager, I was responsible for leading the system development from conception over advanced design to working prototype or a control system, which manages tight formation flying of two satellites observing our sun’s corona.
At SnT, I’m responsible for architectural research on hardware and software solutions aiming at ensuring fault-tolerance in space deployed deployed systems (FNR Core project HERA on Hypervisor-Enforced RAdiation tolerance in multi-core SoCs for space) as well as their commercialization - turning ideas into viable business cases (FNR Jump project SHARCS).
Research Interests
Papers共 45 篇Author StatisticsCo-AuthorSimilar Experts
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IEEE Accessno. 99 (2024): 1-1
IEEE ACCESS (2024): 172581-172595
ECRTSpp.14:1-14:27, (2023)
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FRONTIERS IN COMPUTER SCIENCE (2023)
CoRR (2022)
Rafal Graczyk,Waldemar Bujwan, Marcin Darmetko, Marcin Dziezyc,Damien Galano,Konrad Grochowski,Michal Kurowski,Grzegorz Juchnikowski, Marek Morawski,Michal Mosdorf,Piotr Orleanski,Cedric Thizy,Marcus Völp
Application and Theory of Petri Nets and Concurrency Lecture Notes in Computer Sciencepp.153-174, (2022)
Rafal Graczyk,Waldemar Bujwan, Marcin Darmetko, Marcin Dziezyc,Damien Galano,Konrad Grochowski,Michal Kurowski, Grzegorz Juchnikowski, Marek Morawski,Michal Mosdorf,Piotr Orleanski,Cedric Thizy,Marcus Volp
2022 IEEE 27TH PACIFIC RIM INTERNATIONAL SYMPOSIUM ON DEPENDABLE COMPUTING (PRDC)pp.141-151, (2022)
2021 40TH INTERNATIONAL SYMPOSIUM ON RELIABLE DISTRIBUTED SYSTEMS (SRDS 2021)pp.78-87, (2021)
CoRR (2021)
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Author Statistics
#Papers: 45
#Citation: 737
H-Index: 13
G-Index: 27
Sociability: 6
Diversity: 2
Activity: 0
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