Abstract:
We consider a RAKE receiver for coherent binary orthogonal signaling over a frequency selective multipath Rayleigh fading channel. The receiver uses maximal-ratio combini...Show MoreMetadata
Abstract:
We consider a RAKE receiver for coherent binary orthogonal signaling over a frequency selective multipath Rayleigh fading channel. The receiver uses maximal-ratio combining such that the weight estimation errors are not independent of the additive noise. We find the capacity-achieving energy randomization scheme with two energy levels for the cases of imperfect and perfect channel estimates. We observe that the capacity-achieving probability gets closer to 1/2 with increase in the number of paths. We also show that the capacity is higher if channel estimates are perfect and that the channel estimation errors have more pronounced effect on the capacity at low signal-to-noise ratios.
Published in: IEEE Communications Letters ( Volume: 7, Issue: 8, August 2003)
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- IEEE Keywords
- Index Terms
- Increase In The Number ,
- Additive Noise ,
- Weight Estimation ,
- Fading Channel ,
- Channel Estimation ,
- Channel Selection ,
- Rayleigh Fading ,
- Coherent Signal ,
- Flat Fading ,
- Channel Estimation Error ,
- Multipath Channel ,
- Orthogonal Signal ,
- Binary Signal ,
- Perfect Estimation ,
- Imperfect Estimation ,
- Maximum Ratio Combining ,
- Frequency-selective Channels ,
- Mutual Information ,
- Loss Of Capacity ,
- Dirac Delta ,
- Discrete Levels ,
- Channel Capacity ,
- Low Signal-to-noise Ratio ,
- Signal Energy ,
- Power Allocation Scheme ,
- Optimal Power Allocation ,
- Zero-mean Gaussian ,
- Circular Variance
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Increase In The Number ,
- Additive Noise ,
- Weight Estimation ,
- Fading Channel ,
- Channel Estimation ,
- Channel Selection ,
- Rayleigh Fading ,
- Coherent Signal ,
- Flat Fading ,
- Channel Estimation Error ,
- Multipath Channel ,
- Orthogonal Signal ,
- Binary Signal ,
- Perfect Estimation ,
- Imperfect Estimation ,
- Maximum Ratio Combining ,
- Frequency-selective Channels ,
- Mutual Information ,
- Loss Of Capacity ,
- Dirac Delta ,
- Discrete Levels ,
- Channel Capacity ,
- Low Signal-to-noise Ratio ,
- Signal Energy ,
- Power Allocation Scheme ,
- Optimal Power Allocation ,
- Zero-mean Gaussian ,
- Circular Variance