BOINC projects: Difference between revisions
No edit summary |
add Volpex@Home and Correlizer See more... |
||
| (15 intermediate revisions by the same user not shown) | |||
| Line 157: | Line 157: | ||
| Computer science | | Computer science | ||
| See below | | See below | ||
| A computational platform for analysis based on data extracted from iThena.Measurements project applications | | A computational platform for analysis based on data extracted from iThena.Measurements project applications. [[IThena.Computational|See more...]] | ||
|- | |- | ||
| Line 287: | Line 287: | ||
| Mathematics | | Mathematics | ||
| | | | ||
| | | Compile a database of canonical forms of 10th order diagonal Latin squares (DLS) with orthogonal diagonal Latin squares (ODLS). [[ODLK|See more...]] | ||
|- | |- | ||
| Line 379: | Line 379: | ||
| [https://podcasts.apple.com/us/podcast/rakesearch/id1492837872?i=1000496377228 Listen] | | [https://podcasts.apple.com/us/podcast/rakesearch/id1492837872?i=1000496377228 Listen] | ||
| Implement an application that picks up separate pairs of mutually orthogonal DLSs, which allows reconstructing the full graphs of their orthogonality. [[Rakesearch|See more...]] | | Implement an application that picks up separate pairs of mutually orthogonal DLSs, which allows reconstructing the full graphs of their orthogonality. [[Rakesearch|See more...]] | ||
|- | |- | ||
| Line 551: | Line 538: | ||
| Software testing | | Software testing | ||
| | | | ||
| BOINC Alpha Test allows volunteers to test new versions of BOINC client software on a wide range of computers, thereby increasing the stability and reliability of the software versions released to the public. | | BOINC Alpha Test allows volunteers to test new versions of BOINC client software on a wide range of computers, thereby increasing the stability and reliability of the software versions released to the public. [[BOINC Alpha Test|See more...]] | ||
|- | |- | ||
| Line 984: | Line 971: | ||
| | | | ||
| | | | ||
| An attempt to break 3 original Enigma messages that were intercepted in 1942. | | An attempt to break 3 original Enigma messages that were intercepted in 1942. [[Enigma@Home|See more...]] | ||
|- | |- | ||
| Line 1,107: | Line 1,094: | ||
| | | | ||
| 2007-03-22 | | 2007-03-22 | ||
2009 | |||
| WinXP-98 | | WinXP-98 | ||
| | | | ||
| Line 1,114: | Line 1,102: | ||
| | | | ||
| | | | ||
| | | Indexed digitized botanical literature. [[SciLINC|See more...]] | ||
|- | |- | ||
| Line 1,180: | Line 1,168: | ||
| | | | ||
| | | | ||
| Every DepSpid task is processed in two phases: a networking phase (Phase One) in which the DepSpid spider scans a set of web pages and stores results in a temporary database; and a computational phase (Phase Two) which uses the collected data to calculate dependencies between all pages. | | Every DepSpid task is processed in two phases: a networking phase (Phase One) in which the DepSpid spider scans a set of web pages and stores results in a temporary database; and a computational phase (Phase Two) which uses the collected data to calculate dependencies between all pages. [[DepSpid|See more...]] | ||
|- | |- | ||
| Line 1,401: | Line 1,389: | ||
| | | | ||
| | | | ||
| NanoHive-1 | | Used the NanoHive-1 nanospace simulator to search for failure modes in diamondoid mechanosynthesis tooltips. [[NanoHive@Home|See more...]] | ||
|- | |- | ||
| Line 1,544: | Line 1,532: | ||
| | | | ||
| | | | ||
| BRaTS@Home | | Perform gravitational lensing ray-tracing simulations of galaxy clusters. [[BRaTS@Home|See more....]] | ||
|- | |- | ||
| Line 1,783: | Line 1,771: | ||
|- | |- | ||
| [https://web.archive.org/web/20060702175205/http://www.ufluids.net/ μFluids] | | [https://web.archive.org/web/20060702175205/http://www.ufluids.net/ μFluids@Home] | ||
| [https://boinc.berkeley.edu/wiki/Publications_by_BOINC_projects#.C2.B5Fluids.40Home 3] | | [https://boinc.berkeley.edu/wiki/Publications_by_BOINC_projects#.C2.B5Fluids.40Home 3] | ||
| 2005-09-19 | | 2005-09-19 | ||
| Line 1,793: | Line 1,781: | ||
| | | | ||
| | | | ||
| Study fluid behavior in microgravity to design satellite propellant management devices. | | Study fluid behavior in microgravity to design satellite propellant management devices. [[UFluids@Home|See more...]] | ||
|- | |- | ||
| Line 2,001: | Line 1,989: | ||
| | | | ||
| | | | ||
| | | Used low-cost MEMS accelerometers in laptops, desktops, and USB sensors to build a distributed, community-based earthquake detection network. [[Quake-Catcher Network|See more...]] | ||
|- | |- | ||
| Line 2,014: | Line 2,002: | ||
| | | | ||
| | | | ||
| | | Used low-cost MEMS accelerometers in laptops, desktops, and USB sensors to build a distributed, community-based earthquake detection network. | ||
|- | |- | ||
| Line 2,079: | Line 2,067: | ||
| | | | ||
| | | | ||
| | | Used Stockfish to evaluate tens of millions of chess positions, building a labeled dataset intended for training a machine-learned classifier of winning positions. [[Chess960@home|See more...]] | ||
|- | |- | ||
| [https://web.archive.org/web/20110801052639/http://www.freehal.net/freehal_at_home FreeHAL] | | [https://web.archive.org/web/20110801052639/http://www.freehal.net/freehal_at_home FreeHAL@home] | ||
| | | | ||
| | | | ||
| Line 2,092: | Line 2,080: | ||
| | | | ||
| | | | ||
| | | a completed Artificial intelligence BOINC project that generated and converted semantic networks for the self-learning chatbot FreeHAL. [[FreeHAL@home|See more...]] | ||
|- | |- | ||
| Line 2,293: | Line 2,281: | ||
| | | | ||
| 2014-01-05 | | 2014-01-05 | ||
2014-03-01 | |||
| | | | ||
| | | | ||
| Line 2,300: | Line 2,289: | ||
| | | | ||
| | | | ||
| | | play large numbers of Chess960 (Fischer Random Chess) games, in an effort to build the beginnings of an opening theory for the variant. [[Chess@Home|See more...]] | ||
|- | |- | ||
| Line 2,365: | Line 2,354: | ||
| | | | ||
| | | | ||
| | | Simulate long timescale evolution of atomic scale systems in chemistry and materials science. [[EOn|See more...]] | ||
|- | |- | ||
| Line 2,772: | Line 2,761: | ||
|- | |- | ||
| [https://web.archive.org/web/20120329124047/http://home.edges-grid.eu/home/ EDGeS@Home] | | [https://web.archive.org/web/20120329124047/http://home.edges-grid.eu/home/ EDGeS@Home] | ||
| [https://boinc.berkeley.edu/pubs.php#EDGeS@Home | | [https://boinc.berkeley.edu/pubs.php#EDGeS@Home 13] | ||
| 2009-10-28 | | 2009-10-28 | ||
| | | | ||
| Line 2,781: | Line 2,770: | ||
| | | | ||
| | | | ||
| To support the execution of selected and validated scientific applications developed by the EGEE and EDGeS community. | | To support the execution of selected and validated scientific applications developed by the EGEE and EDGeS community. [[EDGeS@Home|See more...]] | ||
|- | |- | ||
| Line 2,847: | Line 2,836: | ||
| | | | ||
| | | | ||
| | | simulations of clonal plant growth to inform the ecological design of sustainable prairie ecosystems. [[Virtual Prairie|See more...]] | ||
|- | |- | ||
| Line 3,320: | Line 3,309: | ||
| [https://web.archive.org/web/20130525113734/http://svahesrv2.bioquant.uni-heidelberg.de/correlizer/ Correlizer] | | [https://web.archive.org/web/20130525113734/http://svahesrv2.bioquant.uni-heidelberg.de/correlizer/ Correlizer] | ||
| [https://boinc.berkeley.edu/pubs.php#Correlizer 5] | | [https://boinc.berkeley.edu/pubs.php#Correlizer 5] | ||
| | |2011-08-03 | ||
2015 | |||
| | | | ||
| | | | ||
| | | | ||
| | | | ||
|BioQuant Centre, University of Heidelberg | |||
| | | | ||
| | | | ||
| | | Studiy the organization of genomes using long-range correlation analysis of completely sequenced chromosomes. [[Correlizer|See more...]] | ||
|- | |- | ||
| Line 3,338: | Line 3,328: | ||
| | | | ||
| | | | ||
|Academia Sinica Grid Computing | |||
| | | | ||
| | | | ||
| | | Bridging Taiwanese volunteer computers to European e-Science service grid infrastructure. [[Taiwan Desktop Grid|See more...]] | ||
| | |||
|- | |- | ||
| Line 3,471: | Line 3,461: | ||
| | | | ||
| | | | ||
| Protein structure prediction has been complemented by other nanoscale molecule simulations. Within the scope of polymer crystallography we are researching conformations of organic hydrocarbons. | | Protein structure prediction has been complemented by other nanoscale molecule simulations. Within the scope of polymer crystallography we are researching conformations of organic hydrocarbons. [[POEM@HOME|See more...]] | ||
|- | |- | ||
| Line 3,541: | Line 3,531: | ||
| [https://web.archive.org/web/20160120043345/http://volpexathome.cs.uh.edu/VolPEx/ Volpex@Home] | | [https://web.archive.org/web/20160120043345/http://volpexathome.cs.uh.edu/VolPEx/ Volpex@Home] | ||
| [https://boinc.berkeley.edu/pubs.php#Volpex@Home 9] | | [https://boinc.berkeley.edu/pubs.php#Volpex@Home 9] | ||
| | |2011-12 | ||
2017 | |||
| | | | ||
| | | | ||
| Line 3,549: | Line 3,540: | ||
| | | | ||
| | | | ||
| | | Run communicating parallel programs on failure-prone volunteer PCs through process replication and a shared dataspace. [[Volpex@Home|See more...]] | ||
|- | |- | ||
| Line 3,640: | Line 3,631: | ||
| | | | ||
| | | | ||
| | | Finding abc-triples related to the ABC conjecture. [[ABC@home|See more...]] | ||
|- | |- | ||
| Line 3,758: | Line 3,749: | ||
| | | | ||
| | | | ||
| Research in astronomy. Combine the spectral coverage of GALEX, Pan-STARRS1, and WISE to generate a multi-wavelength UV-optical-NIR galaxy atlas for the nearby Universe. | | Research in astronomy. Combine the spectral coverage of GALEX, Pan-STARRS1, and WISE to generate a multi-wavelength UV-optical-NIR galaxy atlas for the nearby Universe. [[TheSkyNet POGS|See more...]] | ||
|- | |- | ||
| Line 4,019: | Line 4,010: | ||
| | | | ||
| | | | ||
| Solving one of the most famous unsolved puzzles - the three-decade old Kryptos sculpture located on the grounds of the Central Intelligence Agency. | | Solving one of the most famous unsolved puzzles - the three-decade old Kryptos sculpture located on the grounds of the Central Intelligence Agency. [[Kryptos@Home|See more...]] | ||
|- | |- | ||
| Line 4,085: | Line 4,076: | ||
| Multiple applications | | Multiple applications | ||
| | | | ||
| Aerospace engineering, computational biology, and earthquake engineering. | | Aerospace engineering, computational biology, and earthquake engineering. [[BOINC@TACC|See more...]] | ||
|- | |- | ||
| Line 4,411: | Line 4,402: | ||
| | | | ||
| Computational astrophysics, computer simulation of stars, galaxies and the Universe. [[Universe@Home|See more...]] | | Computational astrophysics, computer simulation of stars, galaxies and the Universe. [[Universe@Home|See more...]] | ||
|- | |- | ||
|[https://axiom.heliex.net/ Axiom Distributed AI] | |[https://axiom.heliex.net/ Axiom Distributed AI] | ||
| Line 4,424: | Line 4,416: | ||
| | | | ||
|Distributed neural-network learning techniques influenced by Hebbian learning [[Axiom Distributed AI|See more...]] | |Distributed neural-network learning techniques influenced by Hebbian learning [[Axiom Distributed AI|See more...]] | ||
|- | |||
| [https://rnma.xyz/boinc/ Ramanujan Machine] | |||
| [https://boinc.berkeley.edu/pubs.php#Ramanujan 2] | |||
| 2021-10-14 | |||
| [https://rnma.xyz/boinc/apps.php Windows, Linux] | |||
| {{No}} | |||
| {{No}} | |||
| | |||
| Independent | |||
| Mathematics | |||
| [https://podcasts.apple.com/us/podcast/project-brief-ramanujan-machine-5-2-2022/id1492837872?i=1000570072053 Listen] | |||
| Conjecturing new mathematical formulas. [[Ramanujan Machine|See more...]] | |||
|} | |} | ||