COMPUTATIONAL ELECTROMAGNETICS, IN MOTION
01 / MOTION FDTD STUDIO

Physics doesn’t
stand still.

Explore fields computed with direct FDTD.
Scroll to change the playback direction.

Explore Motion FDTD
SCROLL TO MOVE THE WAVESDirect Yee FDTD · precomputed field playback
Time-domain electromagneticsGeometry-to-results workflowsFields you can inspect
THE PRODUCT FAMILY

One discipline.
Three focused studios.

Choose the workspace built around your electromagnetic problem.

SIGNATURE CAPABILITIES

Built for problems
that go further.

Three focused workflows that bring the distinctive capabilities of each studio to the foreground.

3D
3D VIDEO-DRIVEN MOTION

Bring motion into
the electromagnetic model.

Load time-varying 3D geometry derived from video and explore the fields and Doppler response it produces. Move beyond a single static scene.

Explore this capability
φ
PHASED ARRAYS & CONFORMAL REFLECTARRAYS

Shape the aperture.
Control the beam.

Explore beam steering, phase distributions and reflectarray phase-to-geometry synthesis, including height-profile apertures beyond a flat surface.

Explore this capability
t+
PREDICTIVE SIGNAL CONTINUATION

Predict the tail.
Shorten the simulation.

Extrapolate long-lived port signals from a shorter FDTD acquisition, with checks before accepting the continuation. Spend less time waiting for resonant responses to decay.

Explore this capability
MICROWAVE / PREDICTIVE CONTINUATION

A shorter record.
A longer view.

Acquire the initial port response with FDTD, then predict its continuation. Validation checks determine whether the estimated tail can be accepted.

Explore signal prediction
ABOUT COMPUTEEM STUDIOS

Built from research.
Focused on engineering.

ComputeEM Studios brings specialized numerical-electromagnetics workflows into dedicated software tools.

Founded by Mohammad Marvasti, whose work spans antennas, RF and microwave engineering, and direct FDTD analysis of moving structures.

Explore the research
  1. 01

    Start with the physical problem

    Define the geometry, excitation and observations that matter to your work.

  2. 02

    See more than a final number

    Inspect fields and signals to understand how the structure produces its response.

  3. 03

    Evaluate on a relevant example

    Discuss a demonstration matched to your use case, including model assumptions and practical requirements.

LET’S TALK ELECTROMAGNETICS

Have a problem you’d like to simulate?

Tell us about your geometry, frequency range and the results you need. Start a conversation about ComputeEM Studios and a suitable demonstration.

Connect with MohammadMohammad Marvasti · Founder of ComputeEM Studios and its software family