LEELADHAR MALVIYA
Shri G. S. Institute of Technology and Science, Indore (M.P.), India, Indian Institute of Technology Roorkee
About
Dr. LEELADHAR MALVIYA (IEEE: S'2013-M'2017-SM'2020) was born on 15 December 1975; received his PhD from Indian Institute of Technology (IIT) Roorkee, India in 2017. He received ME in Electronics and TC Engg. from Shri G. S. Institute of Technology and Science, Indore (MP), India, in 2008, and BE in Electronics and Comm., from the Govt. Engineering College, Ujjain (MP), India, in 1998. He is with Shri G. S. Institute of Technology and Science, Indore (MP), India since 2001 as an Assistant Professor. He became an Associate Professor in 2015 and Full Professor in 2018 February. He is working in MIMO antennas for high data rate communications for 4G, 5G, and THz planar microstrip antennas, fractal antennas, and metamaterial antennas for communication. He is a senior member IEEE, Fellow IETE, India, Life member IE, India, and Life member ISTE. He authored a book on MIMO Antennas for Wireless Communication: Theory and Design (CRC Press, Taylor and Francis).
Employment
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Shri G. S. Institute of Technology and Science, Indore (M.P.), India Professor2018 - Present
Education
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Indian Institute of Technology Roorkee PHD2013 - 2017
Projects & Funding
Projects & funding information is unavailable.
Publications (58)
- Design, developments, and applications of 5G antennas: A review Save
- H-Plane Substrate Integrated Waveguide Horn Radiator for 5G Application Save
- THz antennas design, developments, challenges, and applications: A review Save
- Beamforming MIMO Array Antenna for 5G-Millimeter-Wave Application Save
- Stepped Patch Antenna for GSM Applications Save
- Ultra Wideband MIMO Antenna Design with High Isolation for THz Application Save
- Sub-Terahertz MIMO Array Antenna for Future Wireless Applications Save
- Sub-THz High Efficiency MIMO Antenna for Short Range Wireless Communication Save
- Resource Optimization using Improved Genetic Algorithm for Device-to-Device Communication Under Cellular Network Save
- Performance Improvement of 28~GHz Antenna Array for Fifth-Generation Wireless Communication System Save