Head shot Mike Potter

Dr. Michael Edward Potter

B.Eng. (Phys), PhD

Positions

Teaching professor

Schulich School of Engineering, Department of Electrical and Software Engineering

Contact information

Phone number

Office: +1 (403) 220-4129

Location

Office: ICT355

Background

Educational Background

B.Eng. Engineering Physics (Electrical), Royal Military College Canada, 1992

PhD Electrical Engineering, University of Victoria, 2001

Courses

Course number Course title Semester
ENEL 475 Electromagnetic Fields and Applications
ENEL 327 Signals and Transformations

Awards

  • SSE Teaching Achievement Award, 2018
  • Engineering Student Society Excellence in Teaching award, 2014
  • Outstanding Teaching Performance, 2014
  • Outstanding Teaching Performance, 2013
  • Schulich School of Engineering Faculty Service Excellence Award, 2013
  • IEEE Antennas and Propagation Society S.A. Schelkunoff Prize Paper Award, 2011
  • Department of Electrical and Computer Engineering Teaching Excellence Award, 2010
  • Electrical and Computer Engineering Graduate (ECEG) Students Association Award for Excellence in Graduate Student Supervision, 2010
  • Service Excellence Award, 2007
  • UofC Engineering Students' Society Teaching Excellence Award for ECE, 2007

Publications

  • A Broadband Metamaterial Based Beam-Shifter. Michael Edward Potter; M* Salmasi; Michal Okoniewski. (2016)
  • FDTD discretization of Maxwell's equations on aface-centered-cubic grid. Michael Edward Potter; M* Salmasi. (2016)
  • Gabor nonstationary deconvolution for attenuation compensation in highly lossy dispersive media. Elise Carolyn Fear; K* Liu; Michael Edward Potter. (2016)
  • Realizing PEC boundary conditions on Lebedev grid. Michael Edward Potter; M* Salmasi; Michal Okoniewski. online. (2017)
  • Perfect Electric Conductor Implementation in 3D Lebedev FDTD. F* Bordbar; Michael Edward Potter; Michal Okoniewski. 1-3. (2019)
  • Perfect Electric Conductor Implementation in 3D Lebedev FDTD. Michael Edward Potter; F* Bordbar; Michal Okoniewski. 1-3. (2019)
  • Increased FDTD Efficiency for Marine CSEM Using Total-Field Scattered-Field Formulation. *Dukeshire A; Michael Edward E Potter; T Tan; Michal Okoniewski. (2011)
  • FDTD Method on an FCC Grid for the Scalar Wave Equation and Maxwell's Equations. Michael Edward E Potter; *Nauta MD. (2011)
  • Labatorials - a New Approach to Teaching Electricity and Magnetism to Students in Engineering. R I Thompson; Michael Edward E Potter; D Ahrenmeiser; Wilson WJF. (2012)
  • FDTD on a Lebedev Grid for Analyzing Magnetized Ferrites. Michal Okoniewski; Michael Edward E Potter; *Nauta MD. 760-763. (2012)
  • A Source Wavelet Deconvolution Approach toImprove the Spatial Resolution for Radar-based Breast Imaging System. Elise Carolyn Fear; K* Liu; Michael Edward Potter. (2013)
  • FDTD on a Lebedev Grid for Improved MaterialModeling. Michael Edward Potter; Michal Okoniewski; M* Nauta. (2013)
  • Data preconditioning with Gabor nonstationary deconvolution for radar imaging of high dissipative and dispersive media. Y Liu*; Michael Edward Potter; Elise Fear. URSI. (2017)
  • Far field model for a dipole antenna over artificial impedance surfaces. A Sutinjo; Michael Edward Potter; Michal Okoniewski; M* Zhou. 1-6. (2007)
  • An optimized AFP scheme for the total/scattered field FDTD formulation. *Tan T; Michael Edward E Potter. (2008)
  • Determining an appropriate number of bits for a digitally controlled reflectarray cell with MEMS switches. Michal Okoniewski; A Sutinjo; Michael Edward E Potter; *Wu B. (2008)
  • Configuration design of MEMS switches in a digitally controlled reflectarray element. *Wu B; Michael Edward E Potter; Michal Okoniewski. (2008)
  • An Efficient cascaded filter form of a 3D-FDTD TF/SF and a Mixed FFT/circulation convolution. *Tan T; Michael Edward E Potter. (2009)
  • Perfectly matched plane wave source in FDTD via an efficient mixed time-frequency block filter formulation. *Tan T; Michael Edward E Potter. (2010)
  • Estimating reflectivity by non-stationarydeconvolution of ultra-wide band radar data: Application to microwave breastimaging. Michael Edward Potter; Elise Carolyn Fear; K* Liu. (2014)
  • Signal-to-Noise Ratio Performance for Detection Systems of Quantum Dot Multiplexed Optical Encoding. Michael Edward E Potter; *Goss KC; Geoffrey Messier. (2010)
  • FDTD Method on a FCC Grid for the Wave and Maxwell Equations. Michael Phillip Lamoureux; Michael Edward E Potter. (2011)
  • Gabor deconvolution: Attenuation functionestimation based on frequency-dependent Q. K* Liu; Michael Edward Potter; Elise Carolyn Fear. 298. (2015)
  • Marine CSEM Scattered Subsurface Response Detection Using Total-Field Scattered-Field FDTD Formulation. Michal Okoniewski; T Tan; *Dukeshire A; Michael Edward E Potter. 1367-1370. (2011)
  • Data capacity analysis of spectrally encoded quantum dots. *Goss KC; Geoffrey Messier; Michael Edward E Potter. (2011)
  • Gabor deconvolution: Attenuation function estimation based on frequency-dependent Q. K Liu; Elise Carolyn Fear; Michael Edward Potter. IEEE. 298. (2015)
  • A 1D multipoint auxiliary propagator (1D-MAP) for sourcing plane waves for FDTD. Michael Edward E Potter; *Tan T. (2007)