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mscthesis.bib
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@article{MPM:SNOW,
title={A material point method for snow simulation},
author={Stomakhin, Alexey and Schroeder, Craig and Chai, Lawrence and Teran, Joseph and Selle, Andrew},
journal={ACM Transactions on Graphics (TOG)},
volume={32},
number={4},
pages={102},
year={2013},
publisher={ACM}
}
@article{SVD:3x3,
title={Computing the singular value decomposition of 3$\times$3 matrices with minimal branching and elementary floating point operations},
author={McAdams, Aleka and Selle, Andrew and Tamstorf, Rasmus and Teran, Joseph and Sifakis, Eftychios and Studios, Walt Disney Animation},
year={2011},
journal = {Tech. Rep. 1690 University of Wisconsin-Madison}
}
@misc{NVIDIA:BEST:PRACTICE,
author = "{NVIDIA Corporation}",
title = {Best Practices Guide - v10.0.130},
howpublished = {\url{https://docs.nvidia.com/cuda/cuda-c-best-practices-guide}},
note = {[Online; accessed 26-September-2018]}
}
@misc{AMD:GPU_OPEN,
author = {Aaltonen, Sebastian},
title = {Optimizing GPU occupancy and resource usage with large thread groups},
howpublished = {\url{https://gpuopen.com/optimizing-gpu-occupancy-resource-usage-large-thread-groups/}},
note = {[Online; accessed 26-September-2018]}
}
@misc{NVIDIA:PEAK_PERFORMANCE,
author = {Bavoil, Louis},
title = {The Peak-Performance Analysis Method for Optimizing Any GPU Workload},
howpublished = {\url{https://devblogs.nvidia.com/the-peak-performance-analysis-method-for-optimizing-any-gpu-workload}},
note = {[Online; accessed 15-September-2018]},
organization = {NVIDIA Corporation}
}
@article{NVIDIA:PARALLEL_REDUCTION,
author = {Harris, Mark},
year = {2007},
month = {01},
pages = {104-110},
title = {Optimizing parallel reduction in CUDA},
volume = {21},
journal = {Proc. ACM SIGMOD}
}
@inproceedings{MPM:INVERT,
title={Energetically consistent invertible elasticity},
author={Stomakhin, Alexey and Howes, Russell and Schroeder, Craig and Teran, Joseph M},
booktitle={Proceedings of the 11th ACM SIGGRAPH/Eurographics conference on Computer Animation},
pages={25-32},
year={2012},
}
@misc{KHRONOS:TIMER_QUERY,
author ={Piers, Daniell},
organization = {The Khronos Group Inc.},
title = {GL\_ARB\_timer\_query},
year = {2014},
howpublished = {\url{https://www.khronos.org/registry/OpenGL/extensions/ARB/ARB_timer_query.txt}},
note = {[Online; accessed 15-September-2018]}
}
@mastersthesis{PIC:GPU,
title={Implementation and performance evaluation of a GPU particle-in-cell code},
author={Payne, Joshua Estes},
year={2012},
school={Massachusetts Institute of Technology},
language={english}
}
@article{stantchev2008fast,
title={Fast parallel particle-to-grid interpolation for plasma PIC simulations on the GPU},
author={Stantchev, George and Dorland, William and Gumerov, Nail},
journal={Journal of Parallel and Distributed Computing},
volume={68},
number={10},
pages={1339--1349},
year={2008},
publisher={Elsevier}
}
@article{MPM:DRUCKER,
title={Drucker-prager elastoplasticity for sand animation},
author={Kl{\'a}r, Gergely and Gast, Theodore and Pradhana, Andre and Fu, Chuyuan and Schroeder, Craig and Jiang, Chenfanfu and Teran, Joseph},
journal={ACM Transactions on Graphics (TOG)},
volume={35},
number={4},
pages={103},
year={2016},
publisher={ACM}
}
@article{MPM:MULTI,
title={Multi-species simulation of po-rous sand and water mixtures},
author={Tampubolon, Andre Pradhana and Gast, Theodore and Kl{\'a}r, Gergely and Fu, Chuyuan and Teran, Joseph and Jiang, Chenfanfu and Museth, Ken},
journal={ACM Transactions on Graphics (TOG)},
volume={36},
number={4},
pages={105},
year={2017},
publisher={ACM}
}
@inproceedings{MPM:OLROYDB,
title={A material point method for viscoelastic fluids, foams and sponges},
author={Ram, Daniel and Gast, Theodore and Jiang, Chenfanfu and Schroeder, Craig and Stomakhin, Alexey and Teran, Joseph and Kavehpour, Pirouz},
booktitle={Proceedings of the 14th ACM SIGGRAPH/Eurographics Symposium on Computer Animation},
pages={157--163},
year={2015},
organization={ACM}
}
@inproceedings{MPM:COURSE,
title={The material point method for simulating continuum materials},
author={Jiang, Chenfanfu and Schroeder, Craig and Teran, Joseph and Stomakhin, Alexey and Selle, Andrew},
booktitle={ACM SIGGRAPH 2016 Courses},
pages={24},
year={2016},
organization={ACM}
}
@inproceedings{MPM:GPU,
title={Production ready MPM simulations},
author={Kl{\'a}r, Gergely and Budsberg, Jeff and Titus, Matt and Jones, Stephen and Museth, Ken},
booktitle={ACM SIGGRAPH 2017 Talks},
pages={42},
year={2017},
organization={ACM}
}
@article{MPM:SHELLS,
author = {Guo, Qi and Han, Xuchen and Fu, Chuyuan and Gast, Theodore and Tamstorf, Rasmus and Teran, Joseph},
title = {A Material Point Method for Thin Shells with Frictional Contact},
journal = {ACM Trans. Graph.},
volume = {37},
number = {4},
month = jul,
year = {2018},
pages = {147.1-147.15},
}
@article{MPM:APIC,
title={An angular momentum conserving affine-particle-in-cell method},
author={Jiang, Chenfanfu and Schroeder, Craig and Teran, Joseph},
journal={Journal of Computational Physics},
volume={338},
pages={137--164},
year={2017},
publisher={Elsevier}
}
@article{MPM:OLD_APIC,
title={The affine particle-in-cell method},
author={Jiang, Chenfanfu and Schroeder, Craig and Selle, Andrew and Teran, Joseph and Stomakhin, Alexey},
journal={ACM Transactions on Graphics (TOG)},
volume={34},
number={4},
pages={51},
year={2015},
publisher={ACM}
}
@article{MPM:OPTIMI_INTEGR,
title={Optimization integrator for large time steps},
author={Gast, Theodore F and Schroeder, Craig and Stomakhin, Alexey and Jiang, Chenfanfu and Teran, Joseph M},
journal={IEEE transactions on visualization and computer graphics},
volume={21},
number={10},
pages={1103--1115},
year={2015},
publisher={IEEE}
}
@article{MPM:PHASE_CHANGE,
title={Augmented MPM for phase-change and varied materials},
author={Stomakhin, Alexey and Schroeder, Craig and Jiang, Chenfanfu and Chai, Lawrence and Teran, Joseph and Selle, Andrew},
journal={ACM Transactions on Graphics (TOG)},
volume={33},
number={4},
pages={138},
year={2014},
publisher={ACM}
}
@article{NVIDIA:SCAN,
author = {Harris, Mark and Sengupta, Shubhabrata and Owens, John D},
title = {Parallel prefix sum (scan) with CUDA},
journal= {GPU gems},
volume = {3},
number = {39},
pages = {851-876},
year = 2007,
organization = {NVIDIA Corporation},
}
@misc{NVIDIA:NNSEARCH,
author = {Hoetzlein, Rama},
title = {Fast Fixed-Radius Nearest Neighbors: Interactive Million-Particle Fluids},
howpublished = {\url{http://on-demand.gputechconf.com/gtc/2014/presentations/S4117-fast-fixed-radius-nearest-neighbor-gpu.pdf}},
year = 2014,
note = {[Online; accessed 30-September-2018]},
organization = {NVIDIA Corporation},
}
@misc{NVIDIA:BINNING,
author = {Green, Simon},
title = {Particle simulation using cuda},
howpublished = {\url{http://developer.download.nvidia.com/assets/cuda/files/particles.pdf}},
year = 2010,
note = {[Online; accessed 30-September-2018]},
organization = {NVIDIA Corporation},
}
@misc{NVIDIA:GVDB_VOXELS,
author = "{NVIDIA Corporation}",
title = {NVIDIA GVDB},
howpublished = {\url{https://developer.nvidia.com/gvdb}},
note = {[Online; accessed 30-September-2018]},
}
@misc{OPENVDB,
author = "{OpenVDB}",
title = {OpenVDB},
howpublished = {\url{https://openvdb.org}},
note = {[Online; accessed 30-September-2018]},
organization = {DreamWorks Animation},
}
@misc{NVIDIA:SHUFFLE,
author = {Westphal, Elmar},
title = {Voting and Shuffling to Optimize Atomic Operations},
howpublished = {\url{https://devblogs.nvidia.com/voting-and-shuffling-optimize-atomic-operations}},
year = 2015,
note = {[Online; accessed 02-October-2018]},
organization = {NVIDIA Corporation},
}
@misc{NVIDIA:SCAN_MODERN,
author = {Baxter, Sean},
title = {Reduce and Scan},
howpublished = {\url{https://moderngpu.github.io/scan.html}},
year = 2013,
note = {[Online; accessed 15-October-2018]},
organization = {NVIDIA Corporation},
}
@misc{MIT:LINEAR_ELASTICITY,
author = {MIT AEROASTRO},
title = {16.20 Structural Mechanics, Module Notes 3: Constitutive Equations},
organization = {Massachusetts Institute of Technology, Department of Aeronautics and Astronautics},
howpublished = {\url{http://web.mit.edu/16.20/homepage/3_Constitutive/Constitutive_files/module_3_no_solutions.pdf}},
note = {[Online; accessed 07-November-2018]},
}
@article{ADAMS:ELASTICITY,
title={Efficient elasticity for character skinning with contact and collisions},
author={McAdams, Aleka and Zhu, Yongning and Selle, Andrew and Empey, Mark and Tamstorf, Rasmus and Teran, Joseph and Sifakis, Eftychios},
journal={ACM Transactions on Graphics (TOG)},
volume={30},
number={4},
pages={37},
year={2011},
publisher={ACM}
}
@misc{MIT:CONTINUUM_MECHANICS,
author = {Abeyaratne, Rohan},
title = {Volume II of Lecture Notes on,The Mechanics of Elastic Solids: Continuum Mechanics},
organization = {MIT Department of Mechanical Engineering},
howpublished = {\url{http://web.mit.edu/abeyaratne/Volumes/RCA_Vol_II.pdf}},
note = {[Online; accessed 08-November-2018]},
year={2012},
}
@book{bathe2006finite,
title={Finite element procedures},
author={Bathe, Klaus-J{\"u}rgen},
year={2006},
publisher={Klaus-Jurgen Bathe}
}
@misc{MCGINTY:CONTINUUM,
author= {McGinty, Bob},
title={Continuum Mechanics},
howpublished = {\url{http://www.continuummechanics.org/basicmath.html}},
note = {[Online; accessed 08-November-2018]},
}
@misc{MIT:SVD,
author = {MITOPENCOURSEWARE},
title = {18.06 Linear Algebra, Unit III. Lecture Summary: Singular value decomposition},
howpublished = {\url{https://ocw.mit.edu/courses/mathematics/18-06sc-linear-algebra-fall-2011/positive-definite-matrices-and-applications/singular-value-decomposition/MIT18_06SCF11_Ses3.5sum.pdf}},
organization = {MIT Department of Mechanical Engineering},
note = {[Online; accessed 14-November-2018]}
}
@book{ochsner2014elasto,
title={Elasto-plasticity of frame structure elements, Chapter 2: Continuum Mechanics of Plasticity},
author={{\"O}chsner, Andreas},
year={2014},
publisher={Springer}
}
@book{strang2007computational,
title={Computational Science and Engineering},
author={Strang, G.},
isbn={9780961408817},
lccn={84052450},
year={2007},
publisher={Wellesley-Cam-bridge Press}
}
@book{dahmen2008numerik,
title={Numerik f{\"u}r Ingenieure und Naturwissenschaftler},
author={Dahmen, W. and Reusken, A.},
isbn={9783540764939},
series={Springer-Lehrbuch},
year={2008},
publisher={Springer Berlin Heidelberg}
}
@misc{Sympy,
author="{SymPy Development Team}",
title={SymPy: A Python library for symbolic mathematics},
howpublished = {\url{https://www.sympy.org/en/index.html}},
note = {[Online; accessed 20-November-2018]}
}
@article{MPM:POLYPIC,
title={A polynomial particle-in-cell method},
author={Fu, Chuyuan and Guo, Qi and Gast, Theodore and Jiang, Chenfanfu and Teran, Joseph},
journal={ACM Transactions on Graphics (TOG)},
volume={36},
number={6},
pages={222},
year={2017},
publisher={ACM}
}
@article{GONZALEZ,
title={Exact energy and momentum conserving algorithms for general models in nonlinear elasticity},
author={Gonzalez, Oscar},
journal={Computer \newline Methods in Applied Mechanics and Engineering},
volume={190},
number={13-14},
pages={1763--1783},
year={2000},
publisher={Elsevier}
}
@article{stantchev2008fast,
title={Fast parallel particle-to-grid interpolation for plasma PIC simulations on the GPU},
author={Stantchev, George and Dorland, William and Gumerov, Nail},
journal={Journal of Parallel and Distributed Computing},
volume={68},
number={10},
pages={1339--1349},
year={2008},
publisher={Elsevier}
}
@article{dong2015gpu,
title={GPU Acceleration of the Generalized Interpolation Material Point Method},
author={Dong, Youkou and Wang, Dong and Randolph, Mark F},
journal={Computers and Geotechnics},
volume={66},
pages={31--38},
year={2015},
publisher={Elsevier}
}
@inproceedings{honig2010generic,
title={A generic approach for developing highly scalable particle-mesh codes for gpus},
author={H{\"o}nig, Wolfgang and Schmitt, Felix and Widera, Ren{\'e} and Burau, Heiko and Juckeland, Guido and M{\"u}ller, Matthias S and Bussmann, Michael}
}
@inproceedings{brandvik2010sblock,
title={SBLOCK: A framework for efficient stencil-based PDE solvers on multi-core platforms},
author={Brandvik, Tobias and Pullan, Graham},
booktitle={20-10 IEEE 10th International Conference on Computer and Information Technology (CIT)},
pages={1181--1188},
year={2010},
organization={IEEE}
}
@article{williams2007scientific,
title={Scientific computing kernels on the cell processor},
author={Williams, Samuel and Shalf, John and Oliker, Leonid and Kamil, Shoaib and Husbands, Parry and Yelick, Katherine},
journal={International Journal of Parallel Programming},
volume={35},
number={3},
pages={263--298},
year={2007},
publisher={Springer}
}
@article{krotkiewski2013efficient,
title={Efficient 3D stencil computations using CUDA},
author={Krotkiewski, Marcin and Dabrowski, Marcin},
journal={Parallel Computing},
volume={39},
number={10},
pages={533--548},
year={2013},
publisher={Elsevier}
}
@inproceedings{crassin2011interactive,
title={Interactive indirect illumination using voxel cone tracing},
author={Crassin, Cyril and Neyret, Fabrice and Sainz, Miguel and Green, Simon and Eisemann, Elmar},
booktitle={Computer Graphics Forum},
volume={30},
number={7},
pages={1921--1930},
year={2011},
organization={Wiley Online Library}
}
@article{sulsky1995application,
title={Application of a particle-in-cell method to solid mechanics},
author={Sulsky, Deborah and Zhou, Shi-Jian and Schreyer, Howard L},
journal={Computer physics communications},
volume={87},
number={1-2},
pages={236--252},
year={1995},
publisher={Elsevier}
}
@techreport{evans1957particle,
title={The particle-in-cell method for hydrodynamic calculations},
author={Evans, Martha W and Harlow, Francis H and Bromberg, Eleazer},
year={1957},
institution={LOS ALAMOS NATIONAL LAB NM}
}
@article{brackbill1986flip,
title={FLIP: A method for adaptively zoned, particle-in-cell calculations of fluid flows in two dimensions},
author={Brackbill, JU and Ruppel, HM},
journal={Journal of Computational physics},
volume={65},
number={2},
pages={314--343},
year={1986},
publisher={Elsevier}
}
@article{gingold1977smoothed,
title={Smoothed particle hydrodynamics: theory and application to non-spherical stars},
author={Gingold, Robert A and Monaghan, Joseph J},
journal={Mon-\hspace{0pt}thly notices of the royal astronomical society},
volume={181},
number={3},
pages={375--389},
year={1977},
publisher={Oxford University Press Oxford, UK}
}
@article{kong2011particle,
title={Particle-in-cell simulations with charge-con-serving current deposition on graphic processing units},
author={Kong, Xianglong and Huang, Michael C and Ren, Chuang and Decyk, Viktor K},
journal={Journal of Computational Physics},
volume={230},
number={4},
pages={1676--1685},
year={2011},
publisher={Elsevier}
}
@article{decyk2011adaptable,
title={Adaptable particle-in-cell algorithms for graphical processing units},
author={Decyk, Viktor K and Singh, Tajendra V},
journal={Computer Physics Communications},
volume={182},
number={3},
pages={641--648},
year={2011},
publisher={Elsevier}
}
@article{burau2010picongpu,
title={PIConGPU: a fully relativistic particle-in-cell code for a GPU cluster},
author={Burau, Heiko and Widera, Ren{\'e}e and Honig, Wolfgang and Juckeland, Guido and Debus, Alexander and Kluge, Thomas and Schramm, Ulrich and Cowan, Tomas E and Sauerbrey, Roland and Bussmann, Michael},
journal={IEEE Transactions on Plasma Science},
volume={38},
number={10},
pages={2831--2839},
year={2010},
publisher={IEEE}
}
@article{burau2010picongpu,
title={PIConGPU: a fully relativistic particle-in-cell code for a GPU cluster},
author={Burau, Heiko and Widera, Ren{\'e}e and Honig, Wolfgang and Juckeland, Guido and Debus, Alexander and Kluge, Thomas and Schramm, Ulrich and Cowan, Tomas E and Sauerbrey, Roland and Bussmann, Michael},
journal={IEEE Transactions on Plasma Science},
volume={38},
number={10},
pages={2831--2839},
year={2010},
publisher={IEEE}
}
@article{steffen2008analysis,
title={Analysis and reduction of quadrature errors in the material point method (MPM)},
author={Steffen, Michael and Kirby, Robert M and Berzins, Martin},
journal={International journal for numerical methods in engineering},
volume={76},
number={6},
pages={922--948},
year={2008},
publisher={Wiley Online Library}
}
@article{gao2017adaptive,
title={An adaptive generalized interpolation material point method for simulating elastoplastic materials},
author={Gao, Ming and Tampubolon, Andre Pradhana and Jiang, Chenfanfu and Sifakis, Eftychios},
journal={ACM Transactions on Graphics (TOG)},
volume={36},
number={6},
pages={223},
year={2017},
publisher={ACM}
}
@misc{NVIDIA:EMULATE,
author = "{NVIDIA Corporation}",
title = {NVEmulate},
howpublished = {\url{https://developer.nvidia.com/nvemulate}},
note = {[Online; accessed 3-December-2018]}
}
@misc{NVIDIA:OCCUPANCY,
author = "{NVIDIA Corporation}",
title = {CUDA Occupancy Calculator},
howpublished = {\url{https://docs.nvidia.com/cuda/cuda-c-best-practices-guide}},
note = {[Online; accessed 3-December-2018]}
}
@misc{APOLUKHIN:MAGIC_GET,
author = {Antony Polukhin},
title = {magic_get},
howpublished={\url{https://github.com/apolukhin/magic_get}},
note = {[Online; accessed 3-December-2018]}
}
@misc{NVIDIA:MEMORY_BAND,
author = {Tim C. Schroeder},
title = {Memory Bandwidth Limited Kernels},
howpublished={\url{http://developer.download.nvidia.com/CUDA/training/bandwidthlimitedkernels_webinar.pdf}},
note = {[Online; accessed 3-December-2018]}
}
@misc{NVIDIA:ACHIEVED_OCCUPANCY,
author = "{NVIDIA Corporation}",
title = {Achieved Occupancy},
howpublished={\url{
https://docs.nvidia.com/gameworks/content/developertools/desktop/analysis/report/cudaexperiments/kernellevel/achievedoccupancy.htm
}},
note = {[Online; accessed 4-December-2018]}
}
@misc{NVIDIA:MAXWELL,
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author = {Gao, Ming and Wang, Xinlei and Wu, Kui and Pradhana, Andre and Sifakis, Eftychios and Yuksel, Cem and Jiang, Chenfanfu},
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