D-Index & Metrics Best Publications
Electronics and Electrical Engineering
Denmark
2023
Computer Science
Denmark
2023

D-Index & Metrics D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines.

Discipline name D-index D-index (Discipline H-index) only includes papers and citation values for an examined discipline in contrast to General H-index which accounts for publications across all disciplines. Citations Publications World Ranking National Ranking
Electronics and Electrical Engineering D-index 70 Citations 17,996 510 World Ranking 517 National Ranking 7
Computer Science D-index 70 Citations 18,180 528 World Ranking 1179 National Ranking 4

Research.com Recognitions

Awards & Achievements

2023 - Research.com Computer Science in Denmark Leader Award

2023 - Research.com Electronics and Electrical Engineering in Denmark Leader Award

2022 - Research.com Computer Science in Denmark Leader Award

2022 - Research.com Electronics and Electrical Engineering in Denmark Leader Award

Overview

What is he best known for?

The fields of study he is best known for:

  • Computer network
  • Telecommunications
  • Statistics

Preben Mogensen mainly investigates Computer network, Telecommunications link, Electronic engineering, Communication channel and Scheduling. Preben Mogensen combines topics linked to Throughput with his work on Computer network. The Telecommunications link study combines topics in areas such as UMTS Terrestrial Radio Access Network, Real-time computing, Spectral efficiency, Orthogonal frequency-division multiplexing and Link adaptation.

The concepts of his Electronic engineering study are interwoven with issues in Frequency allocation, MIMO, Waveform and Antenna. His Communication channel study combines topics from a wide range of disciplines, such as Azimuth, Spatial correlation, Remote sensing and Data transmission. Distributed computing is closely connected to Resource allocation in his research, which is encompassed under the umbrella topic of Scheduling.

His most cited work include:

  • A stochastic MIMO radio channel model with experimental validation (1282 citations)
  • A stochastic model of the temporal and azimuthal dispersion seen at the base station in outdoor propagation environments (577 citations)
  • LTE Capacity Compared to the Shannon Bound (476 citations)

What are the main themes of his work throughout his whole career to date?

His primary scientific interests are in Computer network, Electronic engineering, Telecommunications link, Real-time computing and Interference. Preben Mogensen focuses mostly in the field of Computer network, narrowing it down to topics relating to Throughput and, in certain cases, Resource allocation. His Electronic engineering research includes elements of MIMO, Single antenna interference cancellation, GSM and Antenna.

His Telecommunications link research includes themes of Power control and Communication channel, Spectral efficiency, Orthogonal frequency-division multiplexing. His work deals with themes such as Signal-to-noise ratio, Transmission, Duplex and Co-channel interference, which intersect with Interference. The Scheduling study combines topics in areas such as Quality of service, UMTS Terrestrial Radio Access Network and Distributed computing.

He most often published in these fields:

  • Computer network (40.29%)
  • Electronic engineering (31.73%)
  • Telecommunications link (28.16%)

What were the highlights of his more recent work (between 2015-2021)?

  • Computer network (40.29%)
  • Telecommunications link (28.16%)
  • Interference (15.15%)

In recent papers he was focusing on the following fields of study:

The scientist’s investigation covers issues in Computer network, Telecommunications link, Interference, Real-time computing and Cellular network. Preben Mogensen has researched Computer network in several fields, including Transmission, Spectral efficiency and Mobile broadband. His Telecommunications link research is multidisciplinary, incorporating perspectives in Latency, Retransmission, Network packet, Power control and Communication channel.

His work carried out in the field of Interference brings together such families of science as Electronic engineering, Beamforming, Throughput, Duplex and Base station. He studies Electronic engineering, namely Bandwidth. His biological study spans a wide range of topics, including Frame, Overhead and Radio access technology.

Between 2015 and 2021, his most popular works were:

  • Radio Channel Modeling for UAV Communication Over Cellular Networks (171 citations)
  • How to Ensure Reliable Connectivity for Aerial Vehicles Over Cellular Networks (100 citations)
  • Coverage and Capacity Analysis of LTE-M and NB-IoT in a Rural Area (96 citations)

In his most recent research, the most cited papers focused on:

  • Computer network
  • Telecommunications
  • Statistics

Preben Mogensen mostly deals with Computer network, Telecommunications link, Real-time computing, Interference and Cellular network. His studies deal with areas such as Communication channel and Mobile broadband as well as Computer network. His research in Telecommunications link intersects with topics in Orthogonal frequency-division multiplexing, General Packet Radio Service, Single antenna interference cancellation and Network packet.

His Real-time computing study combines topics in areas such as Latency, Spectral efficiency, Base station, Algorithm and Robustness. His Interference research incorporates themes from Transmission, Electromagnetic interference, Throughput and Reliability. Preben Mogensen has included themes like Battery, Electronic engineering and Duplex in his Throughput study.

This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.

Best Publications

A stochastic MIMO radio channel model with experimental validation

J.P. Kermoal;L. Schumacher;K.I. Pedersen;P.E. Mogensen.
IEEE Journal on Selected Areas in Communications (2002)

1774 Citations

A stochastic model of the temporal and azimuthal dispersion seen at the base station in outdoor propagation environments

K.I. Pedersen;P.E. Mogensen;B.H. Fleury.
IEEE Transactions on Vehicular Technology (2000)

785 Citations

LTE Capacity Compared to the Shannon Bound

P. Mogensen;Wei Na;I.Z. Kovacs;F. Frederiksen.
vehicular technology conference (2007)

647 Citations

A stochastic multiple-input-multiple-output radio channel model for evaluation of space-time coding algorithms

K.I. Pedersen;J.B. Andersen;J.P. Kermoal;P. Mogensen.
vehicular technology conference (2000)

423 Citations

Spatial channel characteristics in outdoor environments and their impact on BS antenna system performance

K.I. Pedersen;P.E. Mogensen;B.H. Fleury.
vehicular technology conference (1998)

326 Citations

From antenna spacings to theoretical capacities - guidelines for simulating MIMO systems

L. Schumacher;K.I. Pedersen;P.E. Mogensen.
personal, indoor and mobile radio communications (2002)

301 Citations

Radio Channel Modeling for UAV Communication Over Cellular Networks

Rafhael Amorim;Huan Nguyen;Preben Mogensen;Istvan Z. Kovacs.
IEEE Wireless Communications Letters (2017)

281 Citations

Experimental analysis of the joint statistical properties of azimuth spread, delay spread, and shadow fading

A. Algans;K.I. Pedersen;P.E. Mogensen.
IEEE Journal on Selected Areas in Communications (2002)

277 Citations

Carrier load balancing and packet scheduling for multi-carrier systems

Yuanye Wang;Klaus I Pedersen;Troels B Sørensen;Preben E Mogensen.
IEEE Transactions on Wireless Communications (2010)

277 Citations

Power azimuth spectrum in outdoor environments

Klaus I. Pedersen;Preben Elgaard Mogensen;Bernard Henri Fleury.
Electronics Letters (1997)

273 Citations

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