Raheel Hashmi
Department of Engineering
Macquarie University
Australia
Biography
Dr Raheel Hashmi is a Lecturer in Wireless/Electronics Engineering, at the School of Engineering. He is a member of Centre for Collaboration in Electromagnetic and Antenna Engineering and the WiMED Research Centre. He is also the Associate Editor of IET Microwaves, Antennas and Propagation, Chair of IEEE Young Professionals NSW, and Secretary of IEEE NSW AP/MTT Joint Chapter. In 2017, he is the Congress Chair for Australia New Zealand Student and Young Professionals Congress (ANZSCON) 2017. Dr Hashmi received PhD in Electronic Engineering, and MS in Computing Systems Engineering degrees from Macquarie University, Australia, and Politecnico di Milano, Italy, respectively. Prior to this, he received BS Electrical Engineering (Hons I) degree from CIIT, Pakistan. During 2015-16, he worked as a Research Fellow in the Reconfigurable Electronics and Antennas Research Group at Macquarie University. From 2012 to 2015, he was a visiting scholar at the Radio Physics Lab, CSIRO Astronomy and Space Science (Marsfield, NSW) and during summer 2014, he was a visiting scholar at the University of California (Irvine), Los Angeles, USA.
Research Interest
Millimetre-wave antenna design and technologies Linearly-polarised and circularly-polarised high-gain antennas Device integrated antennas for bio-medical, wearable, and sensor applications Electromagnetic band gap structures and their applications in antenna design
Publications
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Hashmi RM, Esselle KP. A class of extremely wideband resonant cavity antennas with large directivity-bandwidth products. IEEE Transactions on Antennas and Propagation. 2016 Feb;64(2):830-5.
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Zeb BA, Hashmi RM, Esselle KP, Ge Y. The use of reflection and transmission models to design wideband and dual-band Fabry-Perot cavity antennas. InElectromagnetic Theory (EMTS), Proceedings of 2013 URSI International Symposium on 2013 May 20 (pp. 1084-1087). IEEE.
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Hashmi RM, Zeb BA, Esselle KP. Wideband high-gain EBG resonator antennas with small footprints and all-dielectric superstructures. IEEE Transactions on Antennas and Propagation. 2014 Jun;62(6):2970-7.