3 ms·
Good fun here, and a neat exercise! However, a few comments for people looking to do the same: - Ignoring the 3D nature of antenna placement, you need to model
by physPop 12y ago
Good fun here, and a neat exercise! However, a few comments for people looking to do the same:
- Ignoring the 3D nature of antenna placement, you need to model the concrete walls properly to get an answer that is semi reliable. All materials have frequency dependent reflection and transmission (attentuation) coefficients. Its pretty easy to extend a toy FDTD sim to include these.
- For the reasons above, inferring 2.4Ghz behaviour from ~1GHz (30cm) signal isn't really a good thing to do (even in a "hand waving" manner).
- When displaying E-fields, you usually want to plot the ||E||^2 averaged over one complete wave cycle -- the nodes shouldn't jump around. If they do, it means the simulation hasn't reached a steady state.
Cheers!
- sitkack 12y agoGiven a 2.4Ghz pure sine wave and a couple signal strength detectors couldn't one iteratively modify the frequency dependent values for the various walls?
- Stwerp 12y agoNot for any practical measurements. This would work in say an anechoic environment – save for the wall under test – but you'd end up sampling multipath constructive/destrictuve interference instead of the wall reflections.
- fennecfoxen 12y ago> - Ignoring the 3D nature of antenna placement ... A real antenna won't be an isotropic radiator, either. Got any antenna-pattern plots?