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Ravi Panwar, SMIEEE
Ravi Panwar, SMIEEE
Faculty @ SMST, IIT (BHU) Varanasi, India
Verified email at iitbhu.ac.in - Homepage
Title
Cited by
Cited by
Year
Progress in frequency selective surface-based smart electromagnetic structures: A critical review
R Panwar, JR Lee
Aerospace Science and Technology 66, 216-234, 2017
1742017
Fractal frequency-selective surface embedded thin broadband microwave absorber coatings using heterogeneous composites
R Panwar, S Puthucheri, V Agarwala, D Singh
IEEE Transactions on Microwave Theory and Techniques 63 (8), 2438-2448, 2015
1072015
Design of ferrite–graphene-based thin broadband radar wave absorber for stealth application
R Panwar, S Puthucheri, D Singh, V Agarwala
IEEE Transactions on Magnetics 51 (11), 1-4, 2015
962015
A cost effective solution for development of broadband radar absorbing material using electronic waste
R Panwar, V Agarwala, D Singh
Ceramics International 41 (2), 2923-2930, 2015
722015
Performance and non-destructive evaluation methods of airborne radome and stealth structures
JRL Ravi Panwar
Measurement Science and Technology 29, 2018
662018
Cascaded graphene frequency selective surface integrated tunable broadband terahertz metamaterial absorber
R Mishra, A Sahu, R Panwar
IEEE Photonics Journal 11 (2), 1-10, 2019
612019
Experimental validation of a frequency-selective surface-loaded hybrid metamaterial absorber with wide bandwidth
A Sharma, R Panwar, R Khanna
IEEE Magnetics Letters 10, 1-5, 2019
582019
Development of thin broad band radar absorbing materials using nanostructured spinel ferrites
P Smitha, I Singh, M Najim, R Panwar, D Singh, V Agarwala, GD Varma
Journal of Materials Science: Materials in Electronics, 1-7, 2016
562016
Recent advances in thin and broadband layered microwave absorbing and shielding structures for commercial and defense applications
R Panwar, JR Lee
Functional composites and structures 1 (3), 032001, 2019
452019
Equivalent circuit model for the design of frequency-selective, terahertz-band, graphene-based metamaterial absorbers
R Mishra, R Panwar, D Singh
IEEE Magnetics Letters 9, 1-5, 2018
422018
An efficient use of waste material for development of cost-effective broadband radar wave absorber
R Panwar, S Puthucheri, V Agarwala, D Singh
Journal of Electromagnetic Waves and Applications 29 (9), 1238-1255, 2015
382015
Microwave absorption properties of FSS-impacted composites as a broadband microwave absorber
R Panwar, S Puthucheri, D Singh, V Agarwala, JR Lee
Advanced composite materials 26 (2), 99-113, 2017
322017
Investigation of graphene fractal frequency selective surface loaded terahertz absorber
RMR Panwar
Optical and Quantum Electronics 52, 2020
262020
Effect of particle size on radar wave absorption of fractal frequency selective surface loaded multilayered structures
R Panwar, S Puthucheri, V Agarwala, D Singh
2014 IEEE International Microwave and RF Conference (IMaRC), 186-189, 2014
242014
Design and experimental verification of a thin broadband nanocomposite multilayer microwave absorber using genetic algorithm based approach
R Panwar, V Agarwala, D Singh
AIP Conference Proceedings 1620 (1), 406-415, 2014
222014
Design and optimization of a dual-band slotted microstrip patch antenna using Differential Evolution Algorithm with improved cross polarization characteristics for wireless …
J Kaur, Nitika, R Panwar
Journal of electromagnetic waves and applications 33 (11), 1427-1442, 2019
182019
Extended Jaya's algorithm for optimal design of broadband layered microwave absorbing structures
R Yadav, R Panwar, D Singh
IEEE Magnetics Letters 9, 1-5, 2018
172018
Investigation of a novel natural waste composite as a radar wave absorber at X-band
R Panwar, S Puthucheri, V Agarwala, D Singh
Advanced Science Letters 20 (7-8), 1425-1429, 2014
162014
Novel optimization method of single square FSS impinged and cascaded radar absorbing composites
R Panwar, DS Son, JR Lee
Advanced Composite Materials 27 (3), 297-307, 2018
132018
Multilayer gradient perforated radar absorbing structure for stealth applications
R Yadav, R Panwar
IEEE Transactions on Magnetics 58 (2), 1-5, 2021
122021
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