IEEE CIC x GMU Indie Game Jam: Finishing up & QnA

Virtual: https://events.vtools.ieee.org/m/287758

This series of 5 beginner friendly workshops will teach students how to create their own indie game in Unity. We will teach the building blocks and best practices to create a shooter including creating the player, creating enemies, collectibles, effects, and more! All who attend all five sessions will get a certificate from IEEE WIE and can submit their 2D game into a showcase with small prizes at the end of the workshop series. Quick review of last week’s progress (10 minutes) Introduction to the Package Manager & Post Processing package (10 minutes) ● Apply post processing effects to camera (20 minutes) Implement camera shaking (20 minutes) Break (10 minutes) Building our project (10 minutes) QnA (40 minutes) Virtual: https://events.vtools.ieee.org/m/287758

Generative Adversarial Networks: Used for understanding and producing a random data item

Virtual: https://events.vtools.ieee.org/m/289241

Prerequisites: You do not need to have attended the earlier talks. If you know zero math and zero machine learning, then this talk is for you. Jeff will do his best to explain fairly hard mathematics to you. If you know a bunch of math and/or a bunch machine learning, then these talks are for you. Jeff tries to spin the ideas in new ways. Longer Abstract: Suppose you have a distributions of random images of cats. Suppose you want to learn a neural network that takes uniformly random bits as input and outputs an image of a cat according to this same distribution. One fun thing is that this neural network won't be perfect and hence it will output images of "cats" that it has never seen before. Also you can make small changes in the network input bits and see how it changes the resulting image of a cat. The way we do this is with Generative Adversarial Networks. This is formed by having two competing agents. The task of the first agent, as described above, is to output random images of cats. The task of the second is to discern whether a given image was produced by the true random distribution or by the first agent. By competing, they learn. If we have more time in the talk then we will talk about Convolutional & Recurrent Networks which are used for learning images and sound that are invariant over location and time. Virtual: https://events.vtools.ieee.org/m/289241

Machine Learning Applications in Cybersecurity Domain.

Toronto, Ontario, Canada, Virtual: https://events.vtools.ieee.org/m/294505

Internet is the baseline for cyberspace, where technology infrastructure can be autonomous. It is a virtual space that can be accessed via different interconnected network devices. Cyber-security can be described as a set of measures that makes cyberspace safe. Identifying threats and predicting vulnerabilities in this environment are the key components of the security mechanism. The main cause of security violations is the intrusion of an attacker into the network or electronic devices. Machine learning can be used to increase the accuracy level of detection of threats to improve system efficiency and performance. In this talk, we present how machine learning can help detect and mitigate cyber threats in the systems. Speaker(s): Dr. Mizanur Rahman Virtual: https://events.vtools.ieee.org/m/294505

Introduction to Web Development with HTML and CSS Part 3

Toronto, Ontario, Canada, Virtual: https://events.vtools.ieee.org/m/293260

Ieee Programming HTML and CSS workshops from Saturday 27 November to 18 December Co-sponsored by: Professor Arman Hamzehlou Kahrizi Agenda: It is a hands-on workshop aiming to introduce the basics of web design using HTML5 and CSS. In this series of workshops, we will step-by-step, create and publish a simple and responsive website to a web-hosting service and finally optimize our website for search engines (SEO) so the website is better picked up by the search engine during a search query. Virtual: https://events.vtools.ieee.org/m/293260

IEEE Toronto Member Appreciation at The Toronto Zoo

The Toronto Zoo, 2000 Meadowvale Rd, Toronto, Ontario, Canada, M1B 5K7, Virtual: https://events.vtools.ieee.org/m/286646

The IEEE Toronto would like to thank all of our members for sticking with us through the pandemic. As our way of saying thank you, we would like to invite you and your family (or friends) to join us for lunch and wild times at the Toronto Zoo! Included in the $10 per person registration fee: One general admission ticket to the Toronto Zoo IEEE-Toronto branded swag Lunch at the Special Events Centre (inside the Zoo) At least one IEEE member number must be provided for each registration. Each IEEE member may bring up to 3 additional friend or family members. Please note that all participants in the event must adhere to the Toronto Zoo mask and vaccination policies.

Introduction to CPI’s Satcom & Medical Products

Toronto, Ontario, Canada

Founded in 1948, CPI is a global manufacturer of electronic components and subsystems focused primarily on communications and defense markets. The company develops, manufactures, and globally distributes innovative and reliable technology solutions used in the generation, amplification, transmission, and reception of microwave signals for commercial and military applications. CPI serves customers in the communications, defense, medical, industrial, and scientific markets. The Satcom & Medical Products Division of CPI is located in Georgetown, Ontario. This presentation introduces some of the CPI products, basic technical background, and the application of High Voltage for such medical and Satcom products. Speaker(s): Mahdi Khanali Agenda: Registration is mandatory. Register: https://events.vtools.ieee.org/m/291432

The Bitcoin Blockchain

Toronto, Ontario, Canada, Virtual: https://events.vtools.ieee.org/m/299554

Join us to learn about the basics of the Bitcoin blockchain, how mining works, and what hashes are. The Bitcoin blockchain was the first cryptocurrency, but not the first use of blockchain; blockchain was invented much earlier than the Bitcoin creation. Both Bitcoin and blockchain topics will be covered over the course of this session. At the end of the workshop we will have a Q&A section to answer any questions. Speaker(s): Adi Malihi Click here to register.

Practical Antenna Solutions Enabled by Soft and Hard EM Surfaces and Metasurfaces by Prof. Erik Lier

Toronto, Ontario, Canada, Virtual: https://events.vtools.ieee.org/m/302402

Please join us for an upcoming talk on Feb 07, 4-5 pm (Eastern Time) by Prof. Erik Lier titled "Practical Antenna Solutions Enabled by Soft and Hard EM Surfaces and Metasurfaces", as part of the 2021-2022 IEEE AP-S seminar series. Abstract: The presentation will describe how the concept of electromagnetically soft and hard surfaces and later metamaterial horns (metahorns) came about. The talk will also discuss practical antenna solutions enabled by these EM techniques, as well as future opportunities and challenges in antenna and RF designs. About Speaker: Dr. Erik Lier received his M.Sc. and Ph.D. from the Norwegian University of Science and Technology, Trondheim, Norway. He started working as a university scientific assistant and later as a research scientist at the Electronics Laboratory (ELAB/SINTEF) at the university, carrying out national and international research on microwave antennas and feed components for the European Space Agency (ESA), INTELSAT, INMARSAT and other satellite organizations and radar companies. He spent a year at UCLA as a visiting scholar studying phased array antenna technology. He co-invented the concept of “Soft and Hard electromagnetic surfaces” which is related to the field of electromagnetic bandgap (EBG) structures and complex surfaces. Since 1990 he has been with Lockheed Martin Space, where he has been involved in developing new spacecraft antenna and payload technology. He was instrumental in building up shaped reflector capability in the company which resulted in winning the Asiasat-2 satellite program. He has been involved in the development and modernization of the GPS satellite payload for over more than 20 years. His main research interest and contribution has been in the field of phased array antennas, including design, analysis, system engineering, calibration and test. He was the phased array architect for two phased arrays launched into space. He headed up the internal metamaterials research collaboration effort within the company, which has included university collaboration and has led to several groundbreaking and practical metamaterial-enhanced antennas for space and ground applications. He is granted 37 US patents, has authored and co-authored over 140 journal and conference papers, including two papers in the journal Nature, co-authored one book and authored a book chapter. He received the 2014 IEEE Antennas and Propagation Harold A. Wheeler Applications Prize Paper Award. He is a Lockheed Martin Senior Technical Fellow, a Life Fellow of IEEE and a Fellow of IET. Speaker(s): Erik Lier Virtual: https://events.vtools.ieee.org/m/302402

Design Reliability & Safety for Light Rail Transit (LRT) Propulsion System

Virtual: https://events.vtools.ieee.org/m/303184

Reliability is a main design prerequisite in public transportation systems. This talk will address the governing parameters for a successful reliable propulsion system. Also, the system is not only required to be reliable but most importantly safe. Those considerations will highlight the power electronics' components design. The talk will address how to combine safety and reliability into the design phase of any propulsion system. A case study will present the propulsion design of the Light Rail Transit (LRT) Vehicles. All pertaining design requirements will be verified towards the welfare of a successful deployment of the LRT project in Toronto. Speaker(s): James Li Biography: James Li is a RAMS Lead in Parsons Inc. He has 30 years of experiences in the Railway and Public Transit industry. Prior to joining Parsons, James has worked for Bombardier for 15 years as a Lead RAMS Engineer for development of Monorail and Advance Rapid Transit (ART) system. He is a Professional Engineer for the PEO and APEGA, and ASQ Certified Reliability Engineer. He earned B. Eng from Jilin Polytechnic University and M. Eng from Beijing Jiaotong University in China. Agenda: 1- Introduction of Mr. Li to the audience; 2- Talk by Mr. Li; 3- Open discussion; 4- Conclusions and Adjournment. Register: https://events.vtools.ieee.org/m/303184

MakeUofT 2022

Toronto, Ontario, Canada, Virtual: https://events.vtools.ieee.org/m/302181

Apply to Canada's Largest Makeathon by February 5th @11:59pm EST! Take part in Canada's Largest Makeathon and transform your ideas into reality! Happening online February 19th-20th, and open to all university students! Your team of 2-4 will have 24h to design and build a project from scratch that integrates hardware and software. We are providing $150 hardware reimbursements to all teams that demo! This year, the themes for MakeUofT are: wearables, transport & travel, and useless inventions! Our online makeathon is designed for everyone to participate, from beginners to experts. To help facilitate your learning experience, we will have mentors available throughout the event to assist you! You will also be able to interact with some of the top companies in the industry through our networking booths. Apply at makeuoft.ca by February 5th @11:59pm EST!

Fast Solvers for Electromagnetics-Based Analysis and Design of Integrated Circuits and Systems

Virtual: https://events.vtools.ieee.org/m/303190

The design of advanced integrated circuits and microsystems from zero to terahertz frequencies calls for fast and accurate electromagnetics-based modeling and simulation. The sheer complexity and high design cost associated with the integrated circuits and microsystems prevent one from designing them based on hand calculation, approximation, intuition, or trial and error. The move towards higher frequencies and heterogeneous technologies stresses the need even more. However, the analysis and design of integrated circuits (ICs) and microsystems impose many unique challenges on electromagnetic analysis such as exponentially increased problem size and extremely multiscaled system spanning from nano- to centi-meter scales. These challenges become new driving forces of the advancement of Computational Electromagnetics (CEM) in recent years, since past techniques do not address them well. In this talk, recent advances in fast direct solvers of O(N) (optimal) complexity will be presented, including both direct PDE and IE solvers, for addressing the ultra large problem size encountered in the IC design problems. In these solvers, the underlying dense or sparse system matrix is directly inverted or factorized in O(N) complexity. To show how these solvers work, a series of new accuracy controlled fast matrix arithmetic will be elaborated including the representation of a dense matrix of O(N2) elements using O(N) parameters with controlled accuracy, subsequent matrix-matrix multiplication, matrix factorization, and inversion performed in O(N) complexity with directly controlled accuracy. The application of these fast algorithms to the design and analysis of industry product-level integrated circuits and systems will be presented. Comparisons with direct and iterative solvers in the past will be made, which demonstrate the clear advantages of the new O(N) direct solvers. Co-sponsored by: Center for Computational Science and Engineering (CCSE), Faculty of Applied Science and Engineering, University of Toronto Speaker(s): Dan Jiao Biography: Dan Jiao received the Ph.D. degree in electrical engineering from the University of Illinois at Urbana-Champaign, Urbana, IL, USA, in 2001. She then joined the Technology Computer-Aided Design (CAD) Division, Intel Corporation, until September 2005, where she was a Senior CAD Engineer, Staff Engineer, and Senior Staff Engineer. In September 2005, she joined Purdue University, West Lafayette, IN, USA, as an Assistant Professor with the School of Electrical and Computer Engineering. She is currently a Professor with Purdue University. She has authored 3 book chapters and over 300 papers in refereed journals and international conferences. Her current research interests include computational electromagnetics; high-frequency digital, analog, mixed-signal, and RF integrated circuit (IC) design and analysis; high-performance very large scale integration (VLSI) CAD; modeling of microscale and nanoscale circuits; applied electromagnetics; fast and high-capacity numerical methods; fast time-domain analysis, scattering and antenna analysis; RF, microwave, and millimeter-wave circuits; wireless communication; and bioelectromagnetics. Dr. Jiao has served as a reviewer for many IEEE publications and conferences. She is an associate editor for the IEEE Transactions on Components, Packaging, and Manufacturing Technology. She was the recipient of the 2013 S. A. Schelkunoff Prize Paper Award of the IEEE Antennas and Propagation Society, which recognizes the Best Paper published in the IEEE Transactions on Antennas and Propagation during the previous year. She has been named a University Faculty Scholar by Purdue University since 2013. She was among the 85 engineers selected throughout the nation for the National Academy of Engineerings 2011 U.S. Frontiers of Engineering Symposium. She was the recipient of the 2010 Ruth and Joel Spira Outstanding Teaching Award, the 2008 National Science Foundation (NSF) CAREER Award, the 2006 Jack and Cathie Kozik Faculty Start Up Award (which recognizes an outstanding new faculty member of the School of Electrical and Computer Engineering, Purdue University), a 2006 Office of Naval Research (ONR) Award under the Young Investigator Program, the 2004 Best Paper Award presented at the Intel Corporation’s annual corporate-wide technology conference (Design and Test Technology Conference) for her work on generic broadband model of high-speed circuits, the 2003 Intel Corporation Logic Technology Development (LTD) Divisional Achievement Award, the Intel Corporation Technology CAD Divisional Achievement Award, the 2002 Intel Corporation Components Research Award, the Intel Hero Award (Intel-wide she was the tenth recipient), the Intel Corporation LTD Team Quality Award, and the 2000 Raj Mittra Outstanding Research Award presented by the University of Illinois at Urbana–Champaign. Register: https://events.vtools.ieee.org/m/303190