Hi would you mind adding more information on whether what to do with some of the files extracted from the Python codes? (e.g: vect_noise_64_2.mat, ...) What those files have something to do in generating the k=8 to the SISO/MIMO along with other estimated channes (LS/MMSE) and how to create those values after generating from the Python?
Some of the following figures can not be computed upon the given codes:
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Fig 1: Average sum spectral efficiency of LS and MMSE channel estimators for different combining techniques with increasing number of antennas
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Fig 4b: With co-channel interference (SIR = 6 dB) : I do not see the reference of the SIR = 6dB anywhere in the given codes in SISO for example.
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Fig 5: NMSE of the proposed estimator for different amount of pilots N_p.: Where are the Deep Channel Est according to the correspoding N_p?
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Fig 7: NMSE of the proposed estimator for different channel models.
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Fig 8a: Random pilot contaminations at SIR = 6 dB. Reference curves are in the presence of 10% interference at SIR = 6 dB: Please provide more details about the percentages.
Hope this request reach out to you. Thank you!
Hi would you mind adding more information on whether what to do with some of the files extracted from the Python codes? (e.g:
vect_noise_64_2.mat, ...) What those files have something to do in generating thek=8to the SISO/MIMO along with other estimated channes (LS/MMSE) and how to create those values after generating from the Python?Some of the following figures can not be computed upon the given codes:
Fig 1: Average sum spectral efficiency of LS and MMSE channel estimators for different combining techniques with increasing number of antennasFig 4b: With co-channel interference (SIR = 6 dB): I do not see the reference of theSIR = 6dBanywhere in the given codes in SISO for example.Fig 5: NMSE of the proposed estimator for different amount of pilots N_p.: Where are theDeep Channel Estaccording to the correspodingN_p?Fig 7: NMSE of the proposed estimator for different channel models.Fig 8a: Random pilot contaminations at SIR = 6 dB. Reference curves are in the presence of 10% interference at SIR = 6 dB: Please provide more details about the percentages.Hope this request reach out to you. Thank you!