Position and assignments
You will contribute to the FluxJet vehicle technology, as part of the communication team,
working with professors and engineers across Canada and Europe. An advanced
communication system is being developed for high-speed aerospace vehicles, including a
novel modulation scheme and communication hardware which functions in extreme conditions
similar to upper-atmosphere flight, with critical functions for life safety.
Your first mission is to develop efficient and accurate models for radio wave propagation
to / from FluxJet vehicles confined in metallic tunnels and guideways with complex geometries.
You will also contribute to additional physics modeling and electrical engineering research with
the company.
You will be supervised by TransPod (the company) and co-supervised by a professor at the
university.
Geographic mobility :
No business trip
Telework
Full time
ouvert
Starting date
Profile
Experience & Qualifications
o theoretical analysis : geometrical optics, modal theory
o simulation by ray-tracing approaches.
Some additional optional nice-to-have skills include :
o Various antenna designs, including MIMO arrays
o Drive circuits : including custom design and off-the-shelf
Goals
Your first mission is to develop efficient and accurate models for radio wave propagation to / from FluxJet vehicles confined in metallic tunnels and guideways with complex geometries.
You will also contribute to additional physics modeling and electrical engineering research with
the company.