His primary areas of study are Telecommunications, Computer network, Wireless, Computer security and MIMO. His research in the fields of Throughput and Cellular network overlaps with other disciplines such as Term and Baseline. His work carried out in the field of Computer network brings together such families of science as Cognitive radio, Scalability, Efficient energy use and Vehicular ad hoc network.
His Efficient energy use research incorporates themes from Distributed computing and Mobile Web. His study in Wireless is interdisciplinary in nature, drawing from both Software deployment, Mobile telephony, Telecommunications network, Network security and Base station. The MIMO study combines topics in areas such as Electronic engineering, Bandwidth and Antenna.
Computer network, Efficient energy use, Wireless, Electronic engineering and Telecommunications are his primary areas of study. The various areas that Jonathan Rodriguez examines in his Computer network study include Energy consumption and Wireless network. His study looks at the relationship between Efficient energy use and fields such as Distributed computing, as well as how they intersect with chemical problems.
His Wireless study combines topics from a wide range of disciplines, such as Communication channel and Mobile device. He has researched Electronic engineering in several fields, including MIMO, Spectral efficiency and Antenna. His Telecommunications study typically links adjacent topics like Mobile telephony.
Jonathan Rodriguez mainly investigates Computer network, Electrical engineering, Antenna, Electronic engineering and Distributed computing. Jonathan Rodriguez combines subjects such as Wireless network, Intrusion detection system and Mobile device with his study of Computer network. His research in Antenna intersects with topics in MIMO and Metamaterial.
His MIMO research focuses on Wireless and how it connects with Frequency allocation. His Electronic engineering research incorporates elements of Resonator and Spectral efficiency. His Distributed computing research includes elements of Scheduling, Task, Service and Radio resource management.
His primary areas of investigation include Antenna, MIMO, Wireless, Bandwidth and Electrical engineering. His MIMO study combines topics in areas such as ISM band, Electronic engineering, Spectral efficiency and Impedance matching. His Electronic engineering study which covers Baseband that intersects with Efficient energy use.
His biological study spans a wide range of topics, including Wireless sensor network, Industrial control system and Enterprise information security architecture. His research in Distributed computing focuses on subjects like Scheme, which are connected to Computer network. Jonathan Rodriguez specializes in Computer network, namely Authentication.
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.
Millimeter-Wave Massive MIMO Communication for Future Wireless Systems: A Survey
Sherif Adeshina Busari;Kazi Mohammed Saidul Huq;Shahid Mumtaz;Linglong Dai.
IEEE Communications Surveys and Tutorials (2018)
Millimeter-Wave Massive MIMO Communication for Future Wireless Systems: A Survey
Sherif Adeshina Busari;Kazi Mohammed Saidul Huq;Shahid Mumtaz;Linglong Dai.
IEEE Communications Surveys and Tutorials (2018)
Fundamentals of 5G Mobile Networks
Jonathan Rodriguez.
(2015)
Fundamentals of 5G Mobile Networks
Jonathan Rodriguez.
(2015)
5G D2D Networks: Techniques, Challenges, and Future Prospects
Rafay Iqbal Ansari;Chrysostomos Chrysostomou;Syed Ali Hassan;Mohsen Guizani.
IEEE Systems Journal (2018)
5G D2D Networks: Techniques, Challenges, and Future Prospects
Rafay Iqbal Ansari;Chrysostomos Chrysostomou;Syed Ali Hassan;Mohsen Guizani.
IEEE Systems Journal (2018)
Massive Internet of Things for Industrial Applications: Addressing Wireless IIoT Connectivity Challenges and Ecosystem Fragmentation
Shahid Mumtaz;Ahmed Alsohaily;Zhibo Pang;Ammar Rayes.
IEEE Industrial Electronics Magazine (2017)
Massive Internet of Things for Industrial Applications: Addressing Wireless IIoT Connectivity Challenges and Ecosystem Fragmentation
Shahid Mumtaz;Ahmed Alsohaily;Zhibo Pang;Ammar Rayes.
IEEE Industrial Electronics Magazine (2017)
Robust Mobile Crowd Sensing: When Deep Learning Meets Edge Computing
Zhenyu Zhou;Haijun Liao;Bo Gu;Kazi Mohammed Saidul Huq.
IEEE Network (2018)
Robust Mobile Crowd Sensing: When Deep Learning Meets Edge Computing
Zhenyu Zhou;Haijun Liao;Bo Gu;Kazi Mohammed Saidul Huq.
IEEE Network (2018)
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