Events
Presented by the IEEE Ottawa Section MTT-S/AP-S Chapter & Young ProfessionalsÂ
Accelerating 5G Design Innovation Through SimulationÂ
                                  By
Dr. Laila SalmanÂ
                               Ansys Inc.
                     Date: Wednesday, June 10, 2020
                        Time: 2:30 PM – 4:00 PM
                                  Location: Online
           Â
Abstract
5G connectivity is the next technological revolution. This pervasive, ultrafast compute network will connect billions of devices with data on-demand. It will drive economic expansion in many sectors, spawn new products and services, and transform our lives as we know it. Yet, before 5G can deliver on its promises and quality of service (QoS) metrics, wireless systems designers and engineers must overcome sizable challenges. Â
Ansys 5G simulation solutions empower these individuals to solve the complexities impeding device, network and data center design. Ansys 5G simulation solutions provide electromagnetics, semiconductor, electronics cooling and mechanical analysis tools to accurately simulate 5G radio and related technologies. The multi-solution platform leverages high-performance computing that can be deployed across the enterprise, allowing designers and engineering experts to collaborate more effectively.Â
This seminar will highlight the following 5G engineering challenges:Â
·  End User Equipment Â
  o  multi-frequency band antenna integrationÂ
  o   modeling of mm-wave array antennas Â
  o   RFI, EMI & Desense MitigationÂ
·  Base-Station Antenna ModelingÂ
  o  Full Communication Analysis in Electrically Large & Complex EnvironmentÂ
  o  RFI, Data Coverage & ElectroThermal ReliabilityÂ
Speaker Bio
Dr. Laila Salman received the B.S. and M.S. degrees in electronics and communication engineering from Cairo University, Egypt, and the PhD. Degree in electromagnetic and antenna design from the University of Mississippi. She also worked as a post-doctoral student at the Université de Quebec en Outaouais, Gatineau, Canada till 2010. Her research was on dielectric resonator antennas, wearable antennas, microwave and millimeter-wave circuits and systems, microwave imaging for early detection of breast cancer and scattering from left-handed metamaterials. Dr. Salman joined Ansys Canada Ltd. in August 2010 as a Lead Technical Services Specialist for High Frequency Applications.
Registration: Please use the link in the registration section to sign up for the event.
To join event use the following link.
The IEEE Reliability Society & Power Electronics  A Novel Maximum Power Point Tracking (MPPT) Technique for Photovoltaic Solar Panels By  Mahdi Ranjbar DATE:      July 7, 2020 TIME:       18 – 19:30.     A  Mahdi
A link will be sent to you a day before the event. Â |
Speaker:        Dr : Marin Soljacic, MIT
Date:Â Â Â Â Â Â Â Â Â Â Â Wednesday
Aug 12th, 2020
Time: Â Â Â Â Â Â Â Â Â Â Â 12:00
noon to 13:00
Title of the talk: Â Â Â Photonics:
a great testing-ground to develop new AI algorithms for science
IEEE Ottawa Section: MTT-S / AP-S Chapter presents:
Title: Characterization and Modeling of GaN HEMT Trapping Effects for Microwave Circuit Design
Date: September 2nd, 2020
Time: 11 AM (ET)
Register at: https://events.vtools.ieee.org/m/238482
This talk will review some recent advancements achieved on the characterization and modelling of the trapping effects felt in GaN HEMT transistors, and their impact on microwave circuit design. Because of their nowadays importance, a particular attention will be payed to applications on high power amplifiers for mobile wireless infrastructure and pulsed radar applications.
For that, the talk will start by recollecting the most common model formulations adopted for the various levels of RF engineering, from the device level (physics) to the transistor (circuit) and amplifier (system) level. Starting by the Shockley-Read-Hall capture and emission processes we will be able to understand one of the fundamental signatures of trapping effects, the significantly different charge and discharging time constants, and its impact on power amplifier nonlinear distortion behavior. Then, some widely adopted approaches of the channel current transients’ characterization are addressed and the talk concludes by presenting some illustrative cases of application to RF high power amplifiers.
Speaker: Jose C. Pedro
José C. Pedro received the Diploma, Ph.D., and Habilitation degrees in electronics and telecommunications engineering from the Universidade de Aveiro, Aveiro, Portugal, in 1985, 1993, and 2002, respectively.
He is currently a Full Professor with the Universidade de Aveiro and head of the Aveiro site of the Instituto de Telecomunicações. He has authored 2 books and authored or co-authored more than 200 papers in international journals and symposia. His current research interests include active device modelling and the analysis and design of various nonlinear microwave circuits.
Dr. Pedro was a recipient of various prizes including the 1993 Marconi Young Scientist Award, the 2000 Institution of Electrical Engineers Measurement Prize, the 2015 EuMC Best Paper Microwave Prize, and the Microwave Distinguished Educator Award. He has served the scientific community as a Reviewer and an Editor for several conferences and journals, namely, the IEEE TRANSACTIONS ON MICROWAVE THEORY AND TECHNIQUES, for which he was the Editor-in-Chief.
Date: October 7th 2020
Time: 5:00 – 6:30 pm EDT
Venue: Online – http://bit.ly/DJKYPAAS
Event Contact: Daniel J King (danieljamesking3@gmail.com)
IEEE Ottawa Young Professional Affinity Group presents an Antenna Arrays Seminar by MASc. Daniel J. King. Feel free to register and join us in this exciting event. Some of the topics covered are:
- A basic introduction to the theory and practice of antenna arrays;
- Information about current research opportunities and applications;
- Specific examples in mm-Wave applications!
Register today to this virtual event!
More info here: https://www.ieeeottawa.ca/wp-content/uploads/2020/09/antennas.pdf