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VERSION:2.0
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CALSCALE:GREGORIAN
X-WR-CALNAME:ECEE Seminar Series: From the Next-Generation of Neural Implan
 ts to Unmanned Aerial Vehicles (UAVs): How to Make The System Batteryless\
 , Wireless\, and Truly Autonomous
X-WR-TIMEZONE:Mountain Time (US & Canada)
BEGIN:VEVENT
DTSTAMP:20260712T213749Z
UID:tag:localist.com\,2008:EventInstance_39076280572838
DTSTART:20220210T181000Z
DTEND:20220210T190000Z
DESCRIPTION:Abstract: With the ever-increasing demand for the Internet of T
 hings (IoT)\, sensors\, and autonomoussystems\, the development and advanc
 ements of interfaces for energy harvesting\, wirelesscommunication\, and p
 ower delivery have become even more crucial. This seminar will highlightth
 e prospective challenges and unique approaches to developing an integrated
  solution for awireless and batteryless system for three different case sc
 enarios. The first part of the seminarwill detail a miniaturized implantab
 le wireless neural signal recording and optogeneticneuromodulation system 
 with an inductive-coupling-based wireless powering scheme for thenext gene
 ration of neuroscience research. Followed by that\, a far-field wireless p
 ower transfer(WPT) network for UAS (Unmanned Aerial System) incorporating 
 waveform engineering\,electromechanical beamforming\, and integrated ultra
 -wideband phased-array antenna will bepresented. Lastly\, a liquid-based e
 nergy harvesting concept called reverse electrowetting will beintroduced t
 hat can not only harvest energy from low-frequency movement but also act a
 s a self-powered motion sensor to detect various motion activities\, such 
 as walking and running.\n\nBio: Dr. Ifana Mahbub is an Assistant Professor
  in the Department of Electrical Engineering at theUniversity of North Tex
 as (UNT)\, where she is leading the Integrated Biomedical Circuits and Sys
 temsLaboratory (iBioCASL). Her research interests include energy-efficient
  integrated circuits and systemsdesign for read-out\, wireless communicati
 on\, and wireless power transfer for various implantableand wearable senso
 rs. Her recent research interests also include ultrawideband/mm-wave phase
 d-array antenna design for far-field wireless power transfer/V2V communica
 tion for UAVs. Shereceived the B.Sc. degree (2012) in Electrical and Elect
 ronic Engineering from the BangladeshUniversity of Engineering and Technol
 ogy\, and the Ph.D. degree (2017) in Electrical Engineering fromthe Univer
 sity of Tennessee\, Knoxville. Dr. Mahbub is the recipient of the NSF “E
 arly Career Award”(2020)\, and the DARPA “Young Faculty Award” (2021
 ). In recognition of her outstanding research andteaching achievements\, P
 rofessor Mahbub received the UNT College of Engineering’s PACCARDistingu
 ished Fellowship in 2020 and the UNT Presidential Early Career Professorsh
 ip Award in 2021.Dr. Mahbub has published 2 book chapters\, 26 journal pub
 lications\, and over 50 peer-reviewedconference publications. She currentl
 y serves as the publicity chair for the IEEE Dallas Circuits &Systems Soci
 ety. She has served as a guest editor for the IEEE Open Journal of Antenna
 s andPropagation and MDPI Sensors Journal\, and as the publications chair 
 for several IEEE conferences.
GEO:40.006791;-105.262818
LOCATION:Engineering Center\, ECAD 109\, Clark Conference Room in the Dean'
 s Office
SUMMARY:ECEE Seminar Series: From the Next-Generation of Neural Implants to
  Unmanned Aerial Vehicles (UAVs): How to Make The System Batteryless\, Wir
 eless\, and Truly Autonomous
URL;VALUE=URI:https://calendar.colorado.edu/event/ecee_seminar_series_from_
 the_next-generation_of_neural_implants_to_unmanned_aerial_vehicles_uavs_ho
 w_to_make_the_system_batteryless_wireless_and_truly_autonomous
CATEGORIES:Colloquium/Seminar
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