Abstract:
In an uncoordinated network, the link-level performance of a wireless receiver might degrade significantly due to the interference from other transmitters that share the ...Show MoreMetadata
Abstract:
In an uncoordinated network, the link-level performance of a wireless receiver might degrade significantly due to the interference from other transmitters that share the same spectrum. As a solution, in this study, the concept of partially overlapping tones (POT) is introduced. In POT, interference energy observed at a victim receiver is mitigated by partially overlapping the individual subcarriers via an intentional carrier frequency offset between the links. It is argued that the self-interference arising due to the use of POT can be more easily addressed than the dominant other-user interference, potentially yielding higher spectral efficiencies with POT. Using a spatial Poisson point process based framework, a tractable bit error rate analysis is provided to demonstrate potential benefits emerging from POT in system-level scenarios.
Published in: IEEE Transactions on Communications ( Volume: 62, Issue: 9, September 2014)
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- IEEE Keywords
- Index Terms
- Partial Overlap ,
- Carrier Frequency ,
- Bit Error Rate ,
- Poisson Process ,
- Spectral Efficiency ,
- Bit Error ,
- Error Rate Analysis ,
- Path Loss ,
- Orthogonal Frequency Division Multiplexing ,
- Ultra-wideband ,
- Signal-to-interference-plus-noise Ratio ,
- Bit Error Rate Performance ,
- Link Capacity ,
- Inter-symbol Interference ,
- Link Distance ,
- Quadrature Amplitude Modulation ,
- Subcarrier Spacing ,
- Nyquist Rate ,
- Amount Of Interference ,
- Ambiguity Function ,
- Average Bit Error Rate ,
- HetNets ,
- Total Interference ,
- Guard Band ,
- Self-interference Cancellation ,
- Signal-to-interference Ratio ,
- Hardware Impairments ,
- Multipath Channel ,
- Additive Noise ,
- Small-scale Effects
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Partial Overlap ,
- Carrier Frequency ,
- Bit Error Rate ,
- Poisson Process ,
- Spectral Efficiency ,
- Bit Error ,
- Error Rate Analysis ,
- Path Loss ,
- Orthogonal Frequency Division Multiplexing ,
- Ultra-wideband ,
- Signal-to-interference-plus-noise Ratio ,
- Bit Error Rate Performance ,
- Link Capacity ,
- Inter-symbol Interference ,
- Link Distance ,
- Quadrature Amplitude Modulation ,
- Subcarrier Spacing ,
- Nyquist Rate ,
- Amount Of Interference ,
- Ambiguity Function ,
- Average Bit Error Rate ,
- HetNets ,
- Total Interference ,
- Guard Band ,
- Self-interference Cancellation ,
- Signal-to-interference Ratio ,
- Hardware Impairments ,
- Multipath Channel ,
- Additive Noise ,
- Small-scale Effects
- Author Keywords