Abstract:
This letter proposes a differentially modulated non-orthogonal spectrally efficient frequency-division multiplexing (D-SEFDM) architecture, which allows us to dispense wi...Show MoreMetadata
Abstract:
This letter proposes a differentially modulated non-orthogonal spectrally efficient frequency-division multiplexing (D-SEFDM) architecture, which allows us to dispense with any pilot overhead needed for channel estimation at the receiver, while increasing the bandwidth efficiency in comparison to the orthogonal frequency-division multiplexing counterpart. While it is a challenging task to carry out differential-modulation-assisted non-coherent detection for multi-carrier transmissions in the presence of a severe inter-carrier interference (ICI), in the proposed scheme ICI elimination and symbol demodulation are implemented in a non-coherent manner, by exploiting the fact that ICI imposed by D-SEFDM is deterministically given, once we have a compression factor of non-orthogonal subcarriers. It is verified in our simulations that the proposed D-SEFDM exhibits a higher performance than the conventional coherent SEFDM scheme, especially for the scenarios of a high Doppler frequency.
Published in: IEEE Signal Processing Letters ( Volume: 26, Issue: 7, July 2019)
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- IEEE Keywords
- Index Terms
- Differential Modulation ,
- Frequency Division Multiplexing ,
- Channel Estimation ,
- Conventional Scheme ,
- Orthogonal Frequency Division Multiplexing ,
- Doppler Frequency ,
- Bandwidth Efficiency ,
- Compression Factor ,
- Curve Analysis ,
- Additive Noise ,
- Noise Variance ,
- Bit Error Rate ,
- Fading Channel ,
- Minimum Mean Square Error ,
- Channel Coefficients ,
- Phase Shift Keying ,
- Time-varying Channel ,
- Numerical Curves
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Differential Modulation ,
- Frequency Division Multiplexing ,
- Channel Estimation ,
- Conventional Scheme ,
- Orthogonal Frequency Division Multiplexing ,
- Doppler Frequency ,
- Bandwidth Efficiency ,
- Compression Factor ,
- Curve Analysis ,
- Additive Noise ,
- Noise Variance ,
- Bit Error Rate ,
- Fading Channel ,
- Minimum Mean Square Error ,
- Channel Coefficients ,
- Phase Shift Keying ,
- Time-varying Channel ,
- Numerical Curves
- Author Keywords