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niazadeh--r
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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | پایان نامه | الگوریتم های تخمین کانال تنک و کاربرد آن در طراحی اکوالایزر Sparse Channel Estimation and Its Application in Channel Equalization | نیازاده، راد Niazadeh, Rad | صنعتی شریف | 1389 | کران کرامر - رائو Cramer-Rao Bound / نمایش تنک Sparse Representation / تخمین کانال تنک Sparse Channel Estimation / تخمین گر مشترکا نوعی Joint Typical Estimator / گراف تجزیه Factor Graph / جبران ساز ویتربی Viterbi Equalizer |
05-41375
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| 2 | مقاله | On the achievability of Cramér-Rao bound in noisy compressed sensing | Niazadeh, R. | 2012 |
Chernoff bound.
Typical estimation. Achievability. Building blockes. Compressed sensing. Compressive sampling. Concentration of measure. Gaussianity. joint typicality. Lower bounds. Matrix. Measurement matrix. Signal process. Theoretic limit. Estimation. Signal reconstruction. |
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| 3 | مقاله | An alternating minimization method for sparse channel estimation | Niazadeh, R. | 2010 |
Alternating minimization.
Channel taps. High SNR. Least square methods. Lower bounds. MAP detection. Maximum A posteriori probabilities. Sparse channels. Wireless transmissions. Acoustic fields. Algorithms. Iterative methods. Least squares approximations. Location. Optimization. Signal detection. Underwater acoustics. Estimation. |
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| 4 | مقاله | Erratum: ISI sparse channel estimation based on SL0 and its application in ML sequence-by-sequence equalization (Signal Processing (2012) 92 (1875-1885)) | Niazadeh, R. | 2014 |
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| 5 | مقاله | Corrigendum to "ISI sparse channel estimation based on SL0 and its application in ML sequence-by-sequence equalization" [Signal Processing 92 (2012) 1875-1885] (DOI:10.1016/j.sigpro.2011.09.035) | Niazadeh, R. | 2013 |
Channel estimation.
Channel equalization. Adaptive filters. Sparse recovery. Viterbi algorithm. |
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| 6 | مقاله | Adaptive and non-adaptive ISI sparse channel estimation based on SL0 and its application in ML sequence-by-sequence equalization | Niazadeh, R. | 2010 |
Adaptive methods.
Channel estimation method. Least mean square algorithms. Mean square equalization. Optimality. Simulation result. Sparse channels. Sparse signal representation. Estimation. Underwater acoustics. Viterbi algorithm. Maximum likelihood estimation. |
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| 7 | مقاله | Implementation and optimization of wavelet modulation in additive gaussian channels | Niazadeh, R. | 2009 |
Additive gaussian channel.
AWGN channel. Different frequency. Implementation and optimization. Message signals. Novel methods. Optimal detectors. Wavelet modulation. Communication systems. Digital communication systems. Optimization. Trellis codes. Modulation. |
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| 8 | مقاله | Network vulnerability analysis through vulnerability take-grant model (VTG) | Shahriari, H. R. | 2005 |
Algorithms.
Graph theory. Mathematical models. Polynomials. Security of data. Bounded polynomial algorithm. Vulnerabilities rewriting rules. Vulnerability take-grant model (VTG) Information analysis. |
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| 9 | مقاله | Sequence dependence of the binding energy in chaperone-driven polymer translocation through a nanopore | Abdolvahab, R. H. | 2011 |
Binding affinities.
Binding proteins. Mean first passage time. Monomer types. Nearest-neighbors. Polymer translocation. Potential gradients. Stiff polymers. Trans side. Translocation dynamics. Monomers. Nanopores. Nuclear energy. Polymers. Potential energy. Binding energy. |
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| 10 | مقاله | First passage time distribution of chaperone driven polymer translocation through a nanopore: Homopolymer and heteropolymer cases | Abdolvahab, R. H. | 2011 |
Advection diffusion equation.
Characteristic exponents. Dimensionless parameters. First passage time. First passage time distributions. Heterogeneous polymers. Mean waiting time. Monte Carlo Simulation. Polymer translocation. Power-law dependences. Reaction coordinates. Stiff polymers. Translocation dynamics. Translocation process. Waiting time. Advection. Binding energy. Chain length. Electron transitions. Monte Carlo methods. Nanopores. Partial differential equations. Polymers. Probability distributions. Probability density function. Polymer. Chemical model. Chemistry. Nanopore. Computer Simulation. Diffusion. Models, Chemical. Monte Carlo Method. |
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| 11 | مقاله | Reply: Abedpour, asgari, and tabar | Abedpour, N. | 2011 |
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| 12 | مقاله | Irreversibility in response to forces acting on graphene sheets | Abedpour, N. | 2010 |
Graphene sheets.
Relaxation mechanism. Ripple structure. Sample sizes. Structural parameter. Suspending structures. Graphite. Graphene. |
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| 13 | مقاله | Analysis of design goals of cryptography algorithms based on different components | Molk, A.M.N.G. | Institute of Advanced Engineering and Science, | 2021 |
Analysis.
Telemedicine. IoT. Cryptography algorithms. Component. |
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| 14 | مقاله | Conservation of statistical results under the reduction of pair-contact interactions to solvation interactions | Radja, N.H. | 2005 |
Additives.
Hydrophilicity. Mathematical models. Proteins. Structural design. Vectors. Interactions. Miyazawa-Jernigan interactions. Solvation. Contacts (fluid mechanics) Amino acid. Protein. Protein binding. Solvent. Binding site. Chemical model. Chemical structure. Chemistry. Computer simulation. Protein conformation. Statistical model. Amino Acids. Binding Sites. Models, Chemical. Models, Molecular. Models, Statistical. Solvents. |
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| 15 | مقاله | Multifunctional hyperelastic structured surface for tunable and switchable transparency | Mahabadi, R. K. | MDPI AG, | 2021 |
Fabrication.
Switchable. Structured surfaces. Optimized design. Microwave. Metasurface. Mechanically tunable. |
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| 16 | مقاله | MaxHiC: A robust background correction model to identify biologically relevant chromatin interactions in Hi-C and capture Hi-C experiments | Alinejad Rokny, H. | Public Library of Science, | 2022 |
Bioinformatics.
C (programming language) Maximum likelihood. Python. Background correction. Background modelling. Chromatin structure. Correction models. Functional interaction. GC contents. Genomic regions. High-order. Higher-order. Interaction frequencies. Binding sites. Deoxyribonuclease. Histone. Transcription factor CTCF. Binding site. Binomial distribution. Biological model. Biotechnology. Chromatin structure. Clustered regularly interspaced short palindromic repeat. Data analysis. Enhancer region. Experimental study. Expression quantitative trait locus. Gene mapping. Genetic database. Genetic regulation. Genome-wide association study. Maximum likelihood method. Molecular interaction. Promoter region. Protein binding. Single nucleotide polymorphism. Statistical bias. Statistical significance. Validation process. Chromatin. Genetics. Genome. Genome-wide association study. Genomics. Procedures. Binding Sites. Chromatin. Genome. Genome-Wide Association Study. Genomics. |
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| 17 | مقاله | SER of M-PSK modulation in incremental-selective decode-and-forward cooperative communications over Rayleigh fading channels | Renani, R. A. | 2011 |
Cooperative communication.
Decode and forward. Direct links. Incremental relaying. Optimal power allocation. Phase signals. PSK modulation. Retransmissions. selective relaying. Symbol error rates. Total power. Communication channels (information theory) Communication systems. Fading channels. Innovation. Optimization. Signal receivers. Wireless sensor networks. Rayleigh fading. |
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| 18 | مقاله | Power allocation for incremental-selective decode-and-forward cooperative communications over Rician fading channels | Renani, R. A. | 2011 |
Decode and forward.
Incremental relaying. Power allocations. Rician fading channel. Selective relaying. Communication systems. Fading (radio) Innovation. Fading channels. |
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| 19 | مقاله | Efficient and practical protocol for silylation of hydroxyl groups using reusable lithium perchlorate dispread in silica gel under neutral condition [electronic resource] / N. Azizi, R. Yousefi, M. R. Saidi. | Azizi, N. (Najmodin). |
LP-SiO2.
Silylation. Hexamethyldisilazane. Recycling. Hydroxyl group. Regioselective. Alcohol. Phenol. Lithium perchlorate. Silica gel. |
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| 20 | مقاله | Modeling, estimation, and model predictive control for Covid-19 pandemic with finite security duration vaccine | Delavar, A. | Institute of Electrical and Electronics Engineers Inc, | 2022 |
Economic constraint.
Hospitals. Kalman filters. Model predictive control. Population statistics. Covid pandemic. Economic constraints. Finite duration. Infection rates. Model estimation. Model predictive. Model-predictive control. Mortality rate. Unscented Kalman Filter. Vaccine finite duration. Vaccines. |
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