1,725,805 research outputs found
Arsene Fontaine interview #1
48 p. transcript of an interview with Arsene Fontaine conducted by Ray Marnoch on January 21, 1983. Tape number IH-147, transcript disc 1a.Arsene Fontaine describes a curing by a medicine man and a brief description of how to make a canoe. She also gives a description of transportation by dog team.Othern
Software - Modelling and Simulation of Water Networks based on Loop Method
Simulator algorithm for water networks based on loop method.
Simulation of water networks by using the loop method and Newton-Raphson numerical method (wat_dem1.m) : the simulation starts with running the Matlab function wat_dem1.m
There are given the nodal consumptions, the characteristics of the pipes, head value of reference main head node, inflows/outflows.
sim_demo_pb.m - simulation of water networks by using the loop method and Newton-Raphson numerical method.
determine_flowsi_pb.m - this function uses Depth First search to calculate the following variables: the loop incidence matrix Mlp, the topological incidence matrix Anp, initial pipe flows flows_i, chord/co-tree pipes.
shortest_path.m - This function calculated shortest path between two nodes in the spanning tree.
This simulator can be applied to any water network not containing non-linear controlling hydraulic elements although some “minor modifications” would be necessary in the various Matlab files such as :
in sim_demo_pb.m at line 98 the number of loops l is 28, so for a different water network the number of loops would be different so it is better to change the number 28 with the letter l which stands for the number of loops. other “minor modifications” would be for example in the file determine_flowsi_pb.m at line 408, to remove nodes 65, 61, 62, 35, 34 and node 33 which are fixed head nodes but in a different water network these numbers may not mean anything. other similar “minor modifications”. This algorithm would benefit also from the addition of non-linear controlling elements based for example on the paper Alvarruiz et al. (2018) “Efficient modeling of active control valves in water distribution systems using the loop method”, J. Water Resour. Plann. Manage.
The project has also a DoI: 10.5281/zenodo.3357455 (https://doi.org/10.5281/zenodo.3357455)
The license for this software is a Creative Commons Attribution 4.0 International License (CCL).
The simulator algorithm based on the loop method is also described in the publications from below :
Corneliu T.C. Arsene, "Uncertainty Quantification of Water Distribution System Measurement Data based on a Least Squares Loop Flows State Estimator", arXiv:1701.03147, https://arxiv.org/abs/1701.03147, 2017.
Corneliu T.C. Arsene, Bogdan Gabrys, “Mixed simulation-state estimation in water distribution systems based on a least squares loop flows state estimator”, Applied Mathematical Modelling, 2014.
Corneliu T. C. Arsene, Bogdan Gabrys, David Al-Dabass: Decision support system for water distribution systems based on neural networks and graphs theory for leakage detection. Expert Syst. Appl. 39(18), 2012.
Arsene, C.T.C., Bargiela, A., and Al-Dabass, D. “Modelling and Simulation of Network Systems based on Loop Flows Algorithms”, Int. J. of Simulation: Systems,Science & Technology Vol.5, No. 1 & 2, pp61-72, June 2004.
Arsene, C.T.C., & Bargiela, A., “Decision support for forecasting and fault diagnosis in water distribution systems – robust loop flows state estimation technique”, In Water Software Systems: theory and applications, Research Studies Press Ltd., UK, Vol. 1, 2001.
Arsene, C.T.C., Bargiela, A., Al-Dabass, D., “Simulation of Network Systems based on Loop Flows Algorithms”, In the proceedings of the 7th Simulation Society Conference - UKSim 2004, Oxford, U.K., 2004, ISBN 1-84233-099-3, UKSIM-2004
Chamois-Arsene
Chamois Arsene is a fork of CompCert, the formally verified C compiler.# OverviewThe CompCert C verified compiler is a compiler for a large subset of the C programming language that generates code for the PowerPC, ARM, x86 and RISC-V processors.The distinguishing feature of CompCert is that it has been formally verified using the Coq proof assistant: the generated assembly code is formally guaranteed to behave as prescribed by the semantics of the source C code.For more information on CompCert (authors, supported platforms, supported C features, installation instructions, using the compiler, etc), please refer to the Web site and especially the user's manual.# Chamois Arsene versionChamois Arsene is an extension of Chamois CompCert with security counter-measures.Chamois CompCert is a version of CompCert with additions from Verimag and previously from Kalray (a chamois is a fast and agile caprine, very common in French Alps)
Software for Control of Autonomous Robots Using Fuzzy Logic Controllers Tuned by Genetic Algorithms
<p>This software implements the autonomous control of a robot by using a fuzzy logic controller tuned by a genetic algorithm. The software was written in C programming language for Windows (SDK). A description of the software can be found in the research publication "Arsene, C.T.C., & Zalzala, A.M.S., "Control of autonomous robots using fuzzy logic controllers tuned by genetic algorithms", In Proc Congress on Evolutionary Computation, Vol. 1, pp. 428-35, Washington DC, 1999, IEEE Computer Science Press, ISBN 0-7803-5536-9". Possibly the software to be used also for simulation of Nano-robots.</p>
Chamois-Arsene
Chamois Arsene is a fork of CompCert, the formally verified C compiler.# OverviewThe CompCert C verified compiler is a compiler for a large subset of the C programming language that generates code for the PowerPC, ARM, x86 and RISC-V processors.The distinguishing feature of CompCert is that it has been formally verified using the Coq proof assistant: the generated assembly code is formally guaranteed to behave as prescribed by the semantics of the source C code.For more information on CompCert (authors, supported platforms, supported C features, installation instructions, using the compiler, etc), please refer to the Web site and especially the user's manual.# Chamois Arsene versionChamois Arsene is an extension of Chamois CompCert with security counter-measures.Chamois CompCert is a version of CompCert with additions from Verimag and previously from Kalray (a chamois is a fast and agile caprine, very common in French Alps)
Grood and Suntay joint coordinate system for knee kinematics
Grood and Suntay joint coordinate system for description of knee kinematics
This software implements the Grood and Suntay joint coordinate system for the clinical description of the three-dimensional motion of the knee. The Grood and Suntay joint coordinate system is described in the research paper :
Grood E.S., Suntay W.J., “A joint coordinate system for the clinical description of three-dimensional motions: application to the knee”, J Biomech Eng., 1983 May; 105(2), 136-44, 1983.
The software was used in producing the numerical results shown in various research papers such as :
Arsene, CT, Gabrys, B., “Probabilistic finite element predictions of the human lower limb model in the total knee replacement”, Med Eng Phys, 2013 Aug; 35(8): 1116-32, 2013.
Description of the Matlab files:
Uncerpasl.m – starts the process of calculating the knee joint coordinate system;
Anglesn.m – calculates the angles and the displacements of interest for the tibio-femoral component
Anglespf.m – calculates the angles and the displacements of interest for the patello-femoral component
Readinput.m – reads the text files containing the raw data obtained from the Finie Element simulations such as :
a) femur_COG_I_X - means the X coordinate of the I point which defines a coordinate system together with points J and K with respect to the center of gravity (COG) of the femoral component.
b) femur_COG_X - means the X coordinate of the center of gravity (COG) of the femoral component which together with points I, J , K forms a sort of local coordinate system attached to the femoral component.
All the text files such as femur_COG_I_X_1.txt, femur_COG_I_Y_1.txt, etc were produced with the finite element software PAM-CRASH/PAMOPT from the company ESI, Paris, France (https://www.esi-group.com). The text files contain a single result consisting of 0.12 seconds of the passive flexion cycle and therefore are of no real use but only to verify that the Grood and Suntay Matlab software code works.
Please acknowledge the project financed by the European Union Framework Programme 6 (FP6) entitled Decision Support Software for Orthopaedic Surgery and Mr Corneliu T.C. Arsene if you are going to use this software anywhere in your work. The license for this software is a Creative Commons Attribution 4.0 International License (CCL). This project has also a DOI : 10.5281/zenodo.2136822
It is provided here with no warranty. Direct all questions and requests to [email protected].</p
Grood and Suntay joint coordinate system for knee kinematics
Grood and Suntay joint coordinate system for description of knee kinematics This software implements the Grood and Suntay joint coordinate system for the clinical description of the three-dimensional motion of the knee. The Grood and Suntay joint coordinate system is described in the research paper : Grood E.S., Suntay W.J., “A joint coordinate system for the clinical description of three-dimensional motions: application to the knee”, J Biomech Eng., 1983 May; 105(2), 136-44, 1983. The software was used in producing the numerical results shown in various research papers such as : Arsene, CT, Gabrys, B., “Probabilistic finite element predictions of the human lower limb model in the total knee replacement”, Med Eng Phys, 2013 Aug; 35(8): 1116-32, 2013. Description of the Matlab files: Uncerpasl.m – starts the process of calculating the knee joint coordinate system; Anglesn.m – calculates the angles and the displacements of interest for the tibio-femoral component Anglespf.m – calculates the angles and the displacements of interest for the patello-femoral component Readinput.m – reads the text files containing the raw data obtained from the Finie Element simulations such as : a) femur_COG_I_X - means the X coordinate of the I point which defines a coordinate system together with points J and K with respect to the center of gravity (COG) of the femoral component. b) femur_COG_X - means the X coordinate of the center of gravity (COG) of the femoral component which together with points I, J , K forms a sort of local coordinate system attached to the femoral component. All the text files such as femur_COG_I_X_1.txt, femur_COG_I_Y_1.txt, etc were produced with the finite element software PAM-CRASH/PAMOPT from the company ESI, Paris, France (https://www.esi-group.com). The text files contain a single result consisting of 0.12 seconds of the passive flexion cycle and therefore are of no real use but only to verify that the Grood and Suntay Matlab software code works. Please acknowledge the project financed by the European Union Framework Programme 6 (FP6) entitled Decision Support Software for Orthopaedic Surgery and Mr Corneliu T.C. Arsene if you are going to use this software anywhere in your work. The license for this software is a Creative Commons Attribution 4.0 International License (CCL). This project has also a DOI. It is provided here with no warranty. Direct all questions and requests to [email protected].</span
MIREILLE BELLE MBOU OKASSA, DOLLON MBAMA NTABI & ARSENE LENGA (2020) Morphological and molecular identification of specimens in the genus Euseius (Acari: Phytoseiidae) from the Republic of Congo. Zootaxa, 4768: 479-498.
Okassa, Mireille Belle Mbou, Ntabi, Dollon Mbama, Lenga, Arsene (2021): MIREILLE BELLE MBOU OKASSA, DOLLON MBAMA NTABI & ARSENE LENGA (2020) Morphological and molecular identification of specimens in the genus Euseius (Acari: Phytoseiidae) from the Republic of Congo. Zootaxa, 4768: 479-498. Zootaxa 4920 (4): 600-600, DOI: https://doi.org/10.11646/zootaxa.4920.4.1
Arsene. Excerpts - Don Mus.Ms. 484 : S, orch
Jakob Friedrich GaussQuelle: probably autograph. - Provenienz: Fürstlich Fürstenbergische Hofbibliothek, Donaueschingen[caption title:] Dell'Opera: Arsene. di Federico Gauss. | Recitativo (Numi, amici dei) ed Aria (Quante gioje il sangue sgorga
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