Dmitry Chizhik
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American engineer
Dmitry Chizhik's AcademicInfluence.com Rankings
Dmitry Chizhikengineering Degrees
Engineering
#8805
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#10425
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Electrical Engineering
#2770
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#2911
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Applied Physics
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#3358
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Engineering
Dmitry Chizhik's Degrees
- Bachelors Computer Science Stanford University
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Why Is Dmitry Chizhik Influential?
(Suggest an Edit or Addition)According to Wikipedia, Dmitry Chizhik is an electrical engineer at Bell Labs in Holmdel, New Jersey. Chizhik was named a Fellow of the Institute of Electrical and Electronics Engineers in 2014 for contributions to wireless channel modeling.
Dmitry Chizhik's Published Works
Number of citations in a given year to any of this author's works
Total number of citations to an author for the works they published in a given year. This highlights publication of the most important work(s) by the author
Published Works
- MIMO radar: an idea whose time has come (2004) (1434)
- Spatial Diversity in Radars—Models and Detection Performance (2006) (1360)
- Keyholes, correlations, and capacities of multielement transmit and receive antennas (2002) (511)
- Effect of antenna separation on the capacity of BLAST in correlated channels (2000) (312)
- Performance of MIMO radar systems: advantages of angular diversity (2004) (294)
- Evaluation of Transmit Diversity in MIMO-Radar Direction Finding (2007) (270)
- Capacities of multi-element transmit and receive antennas: Correlations and keyholes (2000) (264)
- Multiple-input-multiple-output measurements and modeling in Manhattan (2003) (253)
- Analysis and performance of some basic space-time architectures (2003) (238)
- A Wideband Spatial Channel Model for System-Wide Simulations (2007) (207)
- Multiple input multiple output measurements and modeling in Manhattan (2002) (99)
- A generalized space-time multiple-input multiple-output (MIMO) channel model (2004) (92)
- The effect of electric field polarization on indoor propagation (1998) (85)
- Capacity growth of multi-element arrays in indoor and outdoor wireless channels (2000) (64)
- Slowing the time-fluctuating MIMO channel by beam forming (2004) (63)
- Lateral, full-3D and vertical plane propagation in microcells and small cells (1998) (59)
- Statistical MIMO Radar (2004) (51)
- Gbps User Rates Using mmWave Relayed Backhaul With High-Gain Antennas (2017) (48)
- Evolution of Base Stations in Cellular Networks: Denser Deployment versus Coordination (2008) (43)
- On resource allocation in dense femto-deployments (2009) (42)
- Spatial and temporal variations of MIMO channels and impacts on capacity (2002) (40)
- Measured and predicted correlation between local average power and small scale fading in indoor wireless communication channels (1998) (37)
- Application of the slope diffraction method for urban microwave propagation prediction (1998) (36)
- Multiple transmit multiple receive (MTMR) capacity survey in Manhattan (2001) (30)
- Suburban Residential Building Penetration Loss at 28 GHz for Fixed Wireless Access (2018) (30)
- A wave-based wideband MIMO channel modeling technique (2002) (28)
- Propagation Over Clutter: Physical Stochastic Model (2006) (27)
- Spatial and polarization characterization of MIMO channels in rural environment (2005) (24)
- Suburban Fixed Wireless Access Channel Measurements and Models at 28 GHz for 90% Outdoor Coverage (2018) (23)
- Path Loss and Directional Gain Measurements at 28 GHz for Non-Line-of-Sight Coverage of Indoors With Corridors (2017) (22)
- Analysis and Performance of Some Basic (2003) (21)
- Outdoor-to-Indoor Empirical Path Loss Models: Analysis for Pico and Femto Cells in Street Canyons (2017) (19)
- Predicting multi-element receive & transmit array capacity outdoors with ray tracing (2001) (19)
- Capacity Scaling of Indoor Pico-Cellular Networks via Reuse (2012) (16)
- Capacity of multiple antenna systems in free space and above perfect ground (2002) (15)
- Radio Wave Diffusion Indoors and Throughput Scaling with Cell Density (2012) (15)
- Directional Measurements in Urban Street Canyons From Macro Rooftop Sites at 28 GHz for 90% Outdoor Coverage (2019) (14)
- Predicting MIMO Performance in Urban Microcells Using Ray Tracing to Characterize the Channel (2012) (14)
- Peer-to-Peer MIMO Radio Channel Measurements in a Rural Area (2006) (14)
- Restricted aperture acoustic microscope lens for Rayleigh wave imaging (1989) (12)
- Deep Learning Propagation Models over Irregular Terrain (2019) (11)
- Path loss, beamforming gain and time dynamics measurements at 28 GHz for 90% indoor coverage (2017) (11)
- Emitter Localization and Visualization (ELVIS): A Backward Ray Tracing Algorithm for Locating Emitters (2007) (11)
- Capacity growth of heterogeneous cellular networks (2013) (10)
- Path Loss and Directional Gain Measurements at 28 GHz for Factory Automation (2019) (10)
- 28 GHz Channel Measurements in the COSMOS Testbed Deployment Area (2019) (10)
- Modeling of radio link budget with beamforming antennas for evaluation of 5G systems (2018) (9)
- Antenna separation and capacity of BLAST in correlated channels (2000) (8)
- Adaptive Transmitter Optimization in Multiuser Multiantenna Systems: Theoretical Limits, Effect of Delays, and Performance Enhancements (2005) (8)
- High frequency rough surface parabolic equation modeling for underwater acoustic communications (2009) (7)
- Application of Biot Theory to the Study of Acoustic Reflection from Sediments (1992) (7)
- Machine Learning-Based Urban Canyon Path Loss Prediction Using 28 GHz Manhattan Measurements (2022) (7)
- Is relayed collaborative communication worth it? (2008) (7)
- Self-Alignment of Interference Arising From Hallway Guidance of Diffuse Fields (2014) (6)
- Interference Suppression in Wireless Cellular Networks through Picocells (2007) (6)
- Coherent and differential acoustic communication in shallow water using transmitter and receiver arrays (2010) (5)
- Performance of Channel Prediction for Wireless Downlink Packet Systems (2006) (5)
- Downlink Multiple Antenna Transmitter Optimization on Spatially and Temporally Correlated Channels with Delayed Channel State Information (2004) (5)
- Wideband and MIMO measurements in wooded and open areas (2005) (5)
- Rician Modeling and Prediction for Wireless Packet Data Systems (2008) (5)
- Slowing the time-fluctuating MIMO channel (2003) (5)
- A modified ray theory for predicting the V(x,z) response of a point- focus acoustic microscope in the presence of a crack (1992) (4)
- Measured characteristics of an acoustic microscope having a bow-tie transducer (1988) (4)
- Application of a diffraction‐corrected ray theory to the slot lens in acoustic microscopy (1992) (4)
- Clutter height variation and its effect on frequency dependence of radio path loss (2011) (4)
- An Accurate Field Model Requiring Minimal Map Data for Guiding and Diffusion in Streets and Buildings (2017) (4)
- Full year channel characterization for adaptive underwater acoustic communications (2009) (4)
- Path Loss Measurements and Models at 28 GHz for 90% Outdoor Suburban Coverage (2018) (4)
- The effect of frequency‐dependent bottom reflectivity on transmission loss in shallow water over a sandy bottom (1993) (4)
- Dense Urban Outdoor-Indoor Coverage from 3.5 to 28 GHz (2022) (4)
- Universal Path Gain Laws for Common Wireless Communication Environments (2021) (3)
- Wave propagation and slowing the time-fluctuating MIMO channel (2004) (3)
- Propagation into buildings: Theory vs. measurements (2016) (3)
- Propagation and capacities of multi-element transmit and receive antennas (2001) (3)
- Compressed Sensing Algorithms for OFDM Channel Estimation (2016) (3)
- Beamforming Learning for mmWave Communication: Theory and Experimental Validation (2019) (3)
- Surface Characterization Using the Restricted Aperture Acoustic Microscope. (1991) (3)
- Achieving Near Maximum Ratio Combining Diversity Gains With Directive Antennas (2017) (3)
- MIMO measurement in Manhattan (2002) (3)
- Path loss measurements and models at 28 GHz for 90% indoor coverage (2018) (3)
- Theoretical Path Loss Model for Suburban Fixed Wireless Access and Comparison Against 28 GHz Measurements (2019) (2)
- Propagation over a valley: Asymptotic results (2009) (2)
- 60 GHz Outdoor to Indoor (O2I) Propagation Measurements in a University Campus (2022) (2)
- Incoherent scattering of normal modes in urban canyon: Theory and measurements (2015) (2)
- A diffraction corrected ray theory for the acoustic microscope (1991) (2)
- Outdoor-to-Indoor 28 GHz Wireless Measurements in Manhattan: Path Loss, Environmental Effects, and 90% Coverage (2022) (2)
- Analytic Propagation Approximation over Variable Terrain and Comparison to Data (2020) (1)
- Asymptotic analysis of propagation over cluttered parabolic ridges (2009) (1)
- Propagation Over Parabolic Terrain: Asymptotics and Comparison to Data (2010) (1)
- Diffusion model for cluttered industrial environments at 28 GHz (2020) (1)
- Outdoor-indoor angular power spectrum prediction (2017) (0)
- Measured characteristics of an acoustic microscope having a bow-tie transducer : Proceeding of the IEEE 1988 ultrasonics symposium, Chicago, (United States), 2–5 Oct. 1988. vol. 2, pp. 763–766. Edited by B. R McAvoy. IEEE (1989) ISSN 0090-5607 (1992) (0)
- Physical limits on directional beam performance of 28 GHz links (2017) (0)
- Directional Measurements and Propagation Models at 28 GHz for Reliable Factory Coverage (2022) (0)
- Propagation overClutter: PhysicalStochastic (2006) (0)
- Channel Prediction over Irregular Terrains: Deep Autoencoder with Random Forest (2022) (0)
- generally be improved both through deploying a dense cell network and using directional antennas for higher directional gain. Since the cost of deploying a network (2020) (0)
- Comparing Power Scattered by RIS with Natural Scatter around Urban Corners (2022) (0)
- Propagation over a parabolic valley: Model comparison to data (2010) (0)
- Long Term Fade Margin for 90% Availability in Fixed Wireless Links With Diversity (2020) (0)
- MIMO: a disruptive technology enabling very high spectral efficiency beyond conventional limits (2004) (0)
- Simple optimizations for the growth of heterogeneous networks (2013) (0)
- Improvement in Target Detectability through MISO RADAR (2011) (0)
- Bottom loss measurements and analysis in the eastern Mediterranean sea (1995) (0)
- Slowing Manhattan MIMO channels (2010) (0)
- Enabling Technologies for the Next Generation Radio and Wireless Communications (2004) (0)
- Minimum Per-Element Power of Phased Array for Gbps Mobile Access in mmWaves (2019) (0)
- Machine Learning-based mmWave Path Loss Prediction for Urban/Suburban Macro Sites (2022) (0)
- A Basic Unified Context for Evaluating the Beam Forming and MIMO Options in a Wireless Link (2011) (0)
- Diffuse scattering model for radio pathloss indoors (2011) (0)
- Outdoor-to-indoor 28 GHz wireless measurements in manhattan: path loss, location impacts, and 90% coverage (2022) (0)
- Measurements of Beamswitching Gains and Fade Dynamics for 28 GHz Indoor Static Links in the Presence of Pedestrian Traffic (2019) (0)
- Broadband MIMO channel model for realistic capacity and system performance evaluations (2003) (0)
- Omnidirectional Ultrasonic Microprobe Hydrophone (1999) (0)
- Application of Biot Theory DTIC to the Study of Acoustic Reflection from Sediments SEP 22 1992 (0)
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