Hi all,
This is my first post here.
I want to switch to the MFR field and now while closing my M.EE thesis I take some courses that seem relevant to M.FE.
I wanted more experienced peoples opinion to seem that I'm not wasting time and effort on courses that I won't use later on.
1.Detection Theory:
1.1.Least Squares & Weighted Least Squares.
1.2.Maximum Likelihood - Single variable , multivarible and bounds.
1.3.Bayesian Estimation.
2.Introduction To Statistical Signal Processing:
2.1. Characterization Of Random Processes.
2.2.Linear Random Processes ( AR,MA and ARMA ).
2.3.Non Parametric Spectral Analysis.
2.4.Parametric Spectral Analysis.
2.5. Filtration ( Estimation ) Of A Random Processes.
2.6.Adaptive Filtration Methods.
3.Random Processes:
3.1.Expansion Of "Regular" Probability Into The Complex Plane.
3.2.Convergance Of Random Sequences And Martingales.
3.3.Stationary Processes And Periodic Processes.
3.4.Random Processes In Linear Systems And Spectral Analysis.
3.5.Representation Of Random Processes.
3.6.Causal , Non Causal Wiener Filtering And Kalman Filter.
Thanks in advance,
Ohad.
This is my first post here.
I want to switch to the MFR field and now while closing my M.EE thesis I take some courses that seem relevant to M.FE.
I wanted more experienced peoples opinion to seem that I'm not wasting time and effort on courses that I won't use later on.
1.Detection Theory:
1.1.Least Squares & Weighted Least Squares.
1.2.Maximum Likelihood - Single variable , multivarible and bounds.
1.3.Bayesian Estimation.
2.Introduction To Statistical Signal Processing:
2.1. Characterization Of Random Processes.
2.2.Linear Random Processes ( AR,MA and ARMA ).
2.3.Non Parametric Spectral Analysis.
2.4.Parametric Spectral Analysis.
2.5. Filtration ( Estimation ) Of A Random Processes.
2.6.Adaptive Filtration Methods.
3.Random Processes:
3.1.Expansion Of "Regular" Probability Into The Complex Plane.
3.2.Convergance Of Random Sequences And Martingales.
3.3.Stationary Processes And Periodic Processes.
3.4.Random Processes In Linear Systems And Spectral Analysis.
3.5.Representation Of Random Processes.
3.6.Causal , Non Causal Wiener Filtering And Kalman Filter.
Thanks in advance,
Ohad.