% Thesis

@PHDTHESIS{shuman_thesis,
  author    = {{D. I Shuman}},
  title     = {From Sleeping to Stockpiling: Energy Conservation via Stochastic Scheduling in Wireless Networks},
  school    = {University of Michigan, Ann Arbor},
  year      = {2010},
}

% Sleep Scheduling

@INPROCEEDINGS{shuman_optimal_Asilomar_2006,
  author    = {D. Shuman and M. Liu},
  title     = {Optimal Sleep Scheduling for a Wireless Sensor Network Node},
  booktitle = {Proc. Asilomar Conf. Signals, Syst., Comput.},
  address   = {Pacific Grove, CA},
  pages     = {1337-1341},
  month     = {Oct.},
  year      = {2006},
}

@TECHREPORT{shuman_optimal_Tech_2006,
  author      = {D. Shuman and M. Liu},
  title       = {Optimal Sleep Scheduling for a Wireless Sensor Network Node},
  type        = {{EECS Tech. Rep. CSPL 377}},
  institution = {University of Michigan},
  address     = {Ann Arbor},
  year        = {2006},
}

% Stockpiling / Opportunistic Scheduling with Deadline Constraints

@ARTICLE{shuman_energy_TIT_2011,
  author    = {{D. I Shuman} and M. Liu and O.Q. Wu},
  title     = {Energy-Efficient Transmission Scheduling with Strict Underflow Constraints},
  journal   = {IEEE Trans. Inf. Theory},
  volume    = {57},
  number    = {3},
  pages     = {1344-1367},
  month     = {Mar.},
  year      = {2011},
}

@INCOLLECTION{shuman_opportunistic_Springer_2010,
  author    = {{D. I Shuman} and M. Liu},
  title     = {Opportunistic Scheduling with Deadline Constraints in Wireless Networks},
  booktitle = {Performance Models and Risk Management in Communication Systems},
  publisher = {Springer},
  editor    = {N. Gulpinar and P. Harrison and B. Rustem},
  pages     = {127-155},
  year      = {2010},
}

@TECHREPORT{shuman_energy_Tech_2010,
  author      = {{D. I Shuman} and M. Liu and O. Q. Wu},
  title       = {Energy-Efficient Transmission Scheduling with Strict Underflow Constraints},
  type        = {{EECS Tech. Rep. CGR 10-01}},
  institution = {University of Michigan},
  address     = {Ann Arbor},
  year        = {2010},
}

@INPROCEEDINGS{shuman_energy_WiOpt_2008,
  author    = {D. Shuman and M. Liu},
  title     = {{Energy-efficient transmission scheduling for wireless media streaming with strict underflow constraints}},
  booktitle = {Proc. Intl. Symp. Model. Optim. in Mobile, Ad Hoc, Wirel. Netw. },
  address   = {Berlin, Germany},
  pages     = {354-359},
  month     = {Apr.},
  year      = {2008},
}

% Soil Moisture Sensing

@ARTICLE{shuman_measurement_Proc_IEEE_2010,
  author    = {{D. I Shuman} and A. Nayyar and A. Mahajan and Y. Goykhman and K. Li and M. Liu and D. Teneketzis and M. Moghaddam and D. Entekhabi},
  title     = {Measurement scheduling for soil moisture sensing: {F}rom physical models to optimal control},
  journal   = {Proc. {IEEE}},
  volume    = {98},
  number    = {11},
  pages     = {1917-1933},
  month     = {Nov.},
  year      = {2010},
}

@ARTICLE{moghaddam_wireless_JSTARS_2010,
  author    = {M. Moghaddam and D. Entekhabi and Y. Goykhman and K. Li and M. Liu and A. Mahajan and A. Nayyar and D. Shuman and D. Teneketzis},
  title     = {A wireless soil moisture smart sensor web using physics-based optimal control: {C}oncept and initial demonstrations},
  journal   = {{IEEE} J. Special Top. Appl. Earth Observations Remote Sens.},
  volume    = {3},
  number    = {4},
  pages     = {522-535},
  month     = {Dec.},
  year      = {2010},
}

@INPROCEEDINGS{moghaddam_soil_IGARSS_2008,
  author    = {M. Moghaddam and D. Entekhabi and Y. Goykhman and M. Liu and A. Mahajan and A. Nayyar and D. Shuman and D. Teneketzis},
  title     = {A Soil Moisture Smart Sensor Web Using Data Assimilation and Optimal Control: {F}ormulation and First Laboratory Demonstration},
  booktitle = {Proc. {IEEE} Intl. Geosci. Remote Sens. Symp.},
  volume    = {5},
  pages     = {140-143},
  address   = {Boston, MA},
  month     = {Jul.},
  year      = {2008},
}

@INPROCEEDINGS{moghaddam_initial_ESTC_2008,
  author    = {M. Moghaddam and D. Entekhabi and L. Farhadi and Y. Goykhman and M. Liu and A. Mahajan and A. Nayyar and D. Shuman and D. Teneketzis},
  title     = {Initial Analyses and Demonstration of a Soil Moisture Smart Sensor Web},
  booktitle = {Proc. Earth Sci. Technol. Conf.},
  address   = {East Adelphi, MD},
  month     = {Jun.},
  year      = {2008},
}

% Clock Synchronization

@INPROCEEDINGS{shuman_dynamic_CDC_2009,
  author    = {{D. I Shuman} and M. Liu},
  title     = {Dynamic Clock Calibration via Temperature Measurement},
  booktitle = {Proc. {IEEE} Conf. Decis. Control},
  address   = {Shanghai, China},
  pages     = {2082-2087},
  month     = {Dec.},
  year      = {2009},
}

% Signal Processing on Graphs

@ARTICLE{Isufi_Graph_Filters_2024,
  author    = {E. Isufi, F. Gama, {D. I Shuman}, and S. Segarra},
  title     = {Graph filters for signal processing and machine learning on graphs},
  journal   = {IEEE Trans. Signal Process.},
  year      = {in press},
}

@ARTICLE{leus_gsp_history_2023,
  author    = {G. Leus, A. G. Marques, J. M. F. Moura, A. Ortega, and {D. I Shuman}},
  title     = {Graph signal processing: {H}istory, development, impact, and outlook},
  journal   = {IEEE Signal Process. Mag.},
  volume    = {40},
  number    = {4},
    pages     = {49-60},
  month	    = {Jun.},
  year      = {2023},
}

@ARTICLE{chen_sp_permutahedron_2021,
  author    = {Y. Chen, J. DeJong, T. Halverson, and {D. I Shuman}},
  title     = {Signal processing on the permutahedron: {T}ight spectral frames for ranked data analysis},
  journal   = {J. Fourier Anal. Appl.},
  volume    = {27},
  number    = {70},
  month	    = {Aug.},
  year      = {2021},
}

@ARTICLE{shuman_LSGFF_2020,
  author    = {{D. I Shuman}},
  title     = {Localized Spectral Graph Filter Frames: {A} Unifying Framework, Survey of
 Design Considerations, and Numerical Comparison},
  journal   = {IEEE Signal Process. Mag.},
  volume    = {37},
  number    = {6},
  pages     = {43-63},
  month	    = {Nov.},
  year      = {2020},
}

@ARTICLE{fan_algorithms,
  author    = {T. Fan, {D. I Shuman}, S. Ubaru, and Y. Saad},
  title     = {Spectrum-Adapted Polynomial Approximation for Matrix Functions with Applications in Graph Signal Processing},
  journal   = {Algorithms},
  volume    = {13},
  number    = {11, 295},
  pages     = {1-22},
  month	    = {Nov.},
  year      = {2020},
}

@ARTICLE{li_mcsfb_2018,
  author    = {S. Li and Y. Jin and {D. I Shuman}},
  title     = {Scalable {$M$}-channel critically sampled filter banks for graph signals},
  journal   = {IEEE Trans. Signal Process.},
  volume    = {67},
  number    = {15},
  pages     = {3954-3969},
  month	    = {Jun.},
  year      = {2019},
}

@INPROCEEDINGS{fan_saop_ICASSP_2019,
  author    = {L. Fan and {D. I Shuman} and S. Ubaru and Y. Saad },
  title     = {Spectrum-adapted polynomial approximation for matrix functions},
  booktitle = {Proc. IEEE Int. Conf. Acc., Speech, and Signal Process.},
  month     = {May},
  year      = {2019},
}

@INPROCEEDINGS{jin_mcsfb_ICASSP_2017,
  author    = {Y. Jin and {D. I Shuman}},
  title     = {An {$M$}-channel critically sampled filter bank for graph signals},
  booktitle = {Proc. IEEE Int. Conf. Acc., Speech, and Signal Process.},
  pages     = {3909-3913},
  month     = {Mar.},
  year      = {2017},
}

@ARTICLE{perraudin_uncertainty_APSIPA_2018,
  author    = {N. Perraudin and B. Ricaud and {D. I Shuman} and Pierre Vandergheynst},
  title     = {Global and Local Uncertainty Principles for Signals on Graphs},
  journal   = {APSIPA Trans. Signal Inf. Process. },
  month     = {Apr.},
  year      = {2018},
}

@ARTICLE{shuman_pyramid_TSP_2016,
  author    = {{D. I Shuman} and Mohammad Javad Faraji and Pierre Vandergheynst},
  title     = {A Multiscale Pyramid Transform for Graph Signals},
  journal   = {IEEE Trans. Signal Process.},
  volume    = {64},
  number    = {8},
  month     = {Apr.},
  year      = {2016},
  pages     = {2119-2134},
}

@ARTICLE{shuman_vertex_frequency_ACHA_2016,
  author    = {{D. I Shuman} and B. Ricaud and P. Vandergheynst},
  title     = {Vertex-Frequency Analysis on Graphs},
  journal   = {Appl. Comput. Harmon. Anal.},
  month     = {Mar.},
  year      = {2016},
  volume    = {40},
  number    = {2},
  pages     = {260-291},
 }

@ARTICLE{shuman_spectrum_adapted_TSP_2015,
  author    = {{D. I Shuman} and Christoph Wiesmeyr and Nicki Holighaus and Pierre Vandergheynst},
  title     = {Spectrum-Adapted Tight Graph Wavelet and Vertex-Frequency Frames},
  journal   = {IEEE Trans. Signal Process.},
  volume    = {63},
  number    = {16},
  month     = {Aug.},
  year      = {2015},
  pages     = {4223-4235},
}

@ARTICLE{thanou_learning_TSP_2014,
  author    = {D. Thanou and {D. I Shuman}  and P. Frossard},
  title     = {Learning Parametric Dictionaries for Signals on Graphs},
  journal   = {IEEE Trans. Signal Process.},
  month     = {Aug.},
  volume    = {62},
  number    = {15},
  year      = {2014},
  pages     = {3849-3862},
}

@INPROCEEDINGS{thanou_GlobalSIP_2013,
  author    = {D. Thanou and {D. I Shuman},  and P. Frossard},
  title     = {Parametric Dictionary Learning for Graph Signals},
  booktitle = {Proc. IEEE Glob. Conf. Signal and Inform. Process.},
  address   = {Austin, Texas},
  month     = {Dec.},
  year      = {2013},
}

@INPROCEEDINGS{ricaud_sparsity_SPIE_2013,
  author    = {B. Ricaud and {D. I Shuman} and P. Vandergheynst},
  title     = {On the Sparsity of Wavelet Coefficients for Signals on Graphs},
  booktitle = {{SPIE} Wavelets and Sparsity},
  address   = {San Diego, California},
  month     = {Aug.},
  year      = {2013},
}

@ARTICLE{shuman_emerging_SPM_2013,
  author    = {{D. I Shuman} and S. K. Narang and P. Frossard and A. Ortega and P. Vandergheynst},
  title     = {The Emerging Field of Signal Processing on Graphs: {E}xtending High-Dimensional Data analysis to Networks and Other Irregular Domains},
  journal   = {IEEE Signal Process. Mag.},
  month     = {May},
  year      = {2013},
  volume    = {30},
  number    = {3},
  pages     = {83-98},
}

@INPROCEEDINGS{shuman_windowed_SSP_2012,
  author    = {{D. I Shuman} and B. Ricaud and P. Vandergheynst},
  title     = {A Windowed Graph {F}ourier Tranform},
  booktitle = {Proc. IEEE Stat. Signal Process. Wkshp.},
  address   = {Ann Arbor, MI},
  month     = {Aug.},
  year      = {2012},
}

@ARTICLE{shuman_distributed_SIPN_2018,
  author    = {{D. I Shuman} and Pierre Vandergheynst and Daniel Kressner and Pascal Frossard},
  title     = {Distributed Signal Processing via {C}hebyshev Polynomial Approximation},
  journal   = {IEEE Trans. Signal Inf. Process. Netw.},
  volume    = {4},
  number    = {4},
  month     = {Dec.},
  year      = {2018},
  pages     = {736-751},
}

@INPROCEEDINGS{shuman_chebyshev_DCOSS_2011,
  author    = {{D. I Shuman} and P. Vandergheynst and P. Frossard},
  title     = {Chebyshev Polynomial Approximation for Distributed Signal Processing},
  booktitle = {Proc. Int. Conf. Distr. Comput. in Sensor Syst.},
  address   = {Barcelona, Spain},
  month     = {Jun.},
  year 	    = {2011},
}

@INPROCEEDINGS{shuman_SSL_SAMPTA_2011,
  author    = {{D. I Shuman} and M. J. Faraji and P. Vandergheynst},
  title     = {Semi-Supervised Learning with Spectral Graph Wavelets},
  booktitle = {Proc. Int. Conf. Samp. Theory and Appl.},
  address   = {Singapore},
  month     = {May},
  year      = {2011},
}

% Software

@ARTICLE{perraudin_gspbox,
  author    = {Nathanael Perraudin and Johan Paratte and {D. I Shuman} and Vassilis Kalofolias and Pierre Vandergheynst and David K. Hammond},
  title     = {{GSPBOX:} {A} toolbox for signal processing on graphs},
  journal   = {arXiv ePrints},
  year      = {2014},
  url       = {http://arxiv.org/abs/1408.5781},
  note      = {\url{https://lts2.epfl.ch/gsp/}},
}

@ARTICLE{perraudin_unlocbox,
  author    = {Nathanael Perraudin and {D. I Shuman} and G. Puy and Pierre Vandergheynst},
  title     = {{UNLocBoX:} {A} {MATLAB} convex optimization toolbox using proximal splitting methods},
  journal   = {arXiv ePrints},
  year      = {2014},
  url       = {https://arxiv.org/abs/1402.0779},
  note      = {\url{https://lts2.epfl.ch/unlocbox/}},
}