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Physics and mathematics of radio wave propagation in cellular wireless communications Book
Salazar-Palma M., Sarkar T.K., Abdallah M.N., Dyab W., Prasad M.V.S.N., Ting S.W.. Physics and mathematics of radio wave propagation in cellular wireless communications[M]. Singapore:Springer Singapore, 2016, 31-65.
Authors:  Salazar-Palma M.;  Sarkar T.K.;  Abdallah M.N.;  Dyab W.;  Prasad M.V.S.N.; et al.
Favorite | TC[Scopus]:3 | Submit date:2019/03/01
Cellular Wireless Communication  Okumura's Experiments  Propagation Models  Propagation Over Earth  Propagation Over Water  Schelkunoff Integrals  Sommerfeld Integrals  
Higher order finite element method solver for the analysis of microwave devices in planar technology Conference paper
Garcia-Donoro D., Ting S., Amor-Martin A., Garcia-Castillo L.E., Salazar-Palma M.. Higher order finite element method solver for the analysis of microwave devices in planar technology[C], 2016, 473-476.
Authors:  Garcia-Donoro D.;  Ting S.;  Amor-Martin A.;  Garcia-Castillo L.E.;  Salazar-Palma M.
Favorite | TC[WOS]:0 TC[Scopus]:0 | Submit date:2019/03/01
Further validation of an electromagnetic macro model for analysis of propagation path loss in cellular networks using measured driving-test data Journal article
Abdallah M.N., Dyab W., Sarkar T.K., Prasad M.V.S.N., Misra C.S., Lamparez A., Salazar-Palma M., Ting S.W.. Further validation of an electromagnetic macro model for analysis of propagation path loss in cellular networks using measured driving-test data[J]. IEEE Antennas and Propagation Magazine, 2014, 56(4), 108-129.
Authors:  Abdallah M.N.;  Dyab W.;  Sarkar T.K.;  Prasad M.V.S.N.;  Misra C.S.; et al.
Favorite | TC[WOS]:17 TC[Scopus]:21 | Submit date:2019/03/01
Far Field  Land Mobile Radio Cellular Systems  Land Mobile Radio Propagation Factors  Log-normal Model  Macro Model  Near Field  Path Loss  Sommerfeld Formulation  
The physiscs of mobile wireless communication explained through an electromagnetic macro model Conference paper
Sarkar T.K., Dyab W.M., Abdallah M.N., Salazar-Palma M., Prasad M.V.S.N., Ting S.W.. The physiscs of mobile wireless communication explained through an electromagnetic macro model[C], 2014, 842-844.
Authors:  Sarkar T.K.;  Dyab W.M.;  Abdallah M.N.;  Salazar-Palma M.;  Prasad M.V.S.N.; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0 | Submit date:2019/03/01
The art of parallelization in solving large electromagnetic field problems out-of-core Conference paper
Zhang Y., Moon H., Donoro D.G., Sarkar T.K., Salazar-Palma M., Ting S.W.. The art of parallelization in solving large electromagnetic field problems out-of-core[C], 2014.
Authors:  Zhang Y.;  Moon H.;  Donoro D.G.;  Sarkar T.K.;  Salazar-Palma M.; et al.
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Advantage of using a higher order basis for the solution of large electromagnetic field problems Conference paper
Salazar-Palma M., Donoro D.G., Sarkar T.K., Zhang Y., Moon H., Ting S.W.. Advantage of using a higher order basis for the solution of large electromagnetic field problems[C], 2014.
Authors:  Salazar-Palma M.;  Donoro D.G.;  Sarkar T.K.;  Zhang Y.;  Moon H.; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0 | Submit date:2019/03/01
Solving large complex problems using a higher order basis: Parallel out-of-core integral equation solvers involving a million unknowns Conference paper
Sarkar T.K., Zhang Y., Donoro D.G., Moon H., Salazar-Palma M., Ting S.W.. Solving large complex problems using a higher order basis: Parallel out-of-core integral equation solvers involving a million unknowns[C], 2014.
Authors:  Sarkar T.K.;  Zhang Y.;  Donoro D.G.;  Moon H.;  Salazar-Palma M.; et al.
Favorite | TC[WOS]:0 TC[Scopus]:0 | Submit date:2019/03/01
Computational Electromagnetics  Method Of Moments  Million Unknowns  Out-of-core Solver  Parallel Computation  
Application of the schelkunoff formulation to the sommerfeld problem of a vertical electric dipole radiating over an imperfect ground Journal article
Sarkar T.K., Dyab W.M., Abdallah M.N., Salazar-Palma M., Prasad M.V.S.N., Ting S.-W.. Application of the schelkunoff formulation to the sommerfeld problem of a vertical electric dipole radiating over an imperfect ground[J]. IEEE Transactions on Antennas and Propagation, 2014, 62(8), 4162-4170.
Authors:  Sarkar T.K.;  Dyab W.M.;  Abdallah M.N.;  Salazar-Palma M.;  Prasad M.V.S.N.; et al.
Favorite | TC[WOS]:11 TC[Scopus]:15 | Submit date:2019/03/01
Integral Equation Solvers  Macro Modeling  Propagation  Propagation Path Loss  Schelkunoff Integrals  Sommerfeld Integrals  Surface Wave  Zenneck Wave  
Use of optimization in designing complex electromagnetic radiating structures Conference paper
Donoro D.G., Salazar-Palma M., Sarkar T.K., Zhang Y., Moon H., Ting S.W.. Use of optimization in designing complex electromagnetic radiating structures[C], 2014.
Authors:  Donoro D.G.;  Salazar-Palma M.;  Sarkar T.K.;  Zhang Y.;  Moon H.; et al.
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Dynamic electromagnetic macro modeling of environment to deal with propagation in cellular wireless communication: Theory and experiment Conference paper
Sarkar, T.K., Dyab, W., Palma, M. Salazar, Prasad, M.V.S.N., Ting, S.W.. Dynamic electromagnetic macro modeling of environment to deal with propagation in cellular wireless communication: Theory and experiment[C]. IEEE Computer Society, 2013, 648-651.
Authors:  Sarkar, T.K.;  Dyab, W.;  Palma, M. Salazar;  Prasad, M.V.S.N.;  Ting, S.W.
Favorite | TC[WOS]:0 TC[Scopus]:0 | Submit date:2018/11/06