Özet
We propose an mobile-to-mobile (M2M) communication system employing analog network coding (ANC) with fixed gain amplify-and-forward (AF) scheme on relay, and investigate performance of the system for the case of imperfect self-interference cancellation proceeded by the the receiver. For this purpose, first we find the expression of end-to-end signal-to-interference-noise-ratio (E2E-SINR) at the receiver. Then, we derive the closed form expression of the cumulative density function (CDF) of E2E-SINR for the fast fading cascaded Rayleigh channel conditions. Using this CDF, we obtain the closed-form expression of outage probability. Finally, we verify the analytic results by comparing with computer simulations. Our results show that the outage probability increases when the success of the self-interference cancellation by the receiver decreases. Also it is shown that the increasing cascading degree of the channels decreases the outage performance of the system.
| Tercüme edilen katkı başlığı | Analog network coding over cascaded fast fading Rayleigh channels in the presence of self-interference |
|---|---|
| Orijinal dil | Türkçe |
| Ana bilgisayar yayını başlığı | 2016 24th Signal Processing and Communication Application Conference, SIU 2016 - Proceedings |
| Yayınlayan | Institute of Electrical and Electronics Engineers Inc. |
| Sayfalar | 253-256 |
| Sayfa sayısı | 4 |
| ISBN (Elektronik) | 9781509016792 |
| DOI'lar | |
| Yayın durumu | Yayınlandı - 20 Haz 2016 |
| Etkinlik | 24th Signal Processing and Communication Application Conference, SIU 2016 - Zonguldak, Türkiye Süre: 16 May 2016 → 19 May 2016 |
Yayın serisi
| Adı | 2016 24th Signal Processing and Communication Application Conference, SIU 2016 - Proceedings |
|---|
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| ???event.eventtypes.event.conference??? | 24th Signal Processing and Communication Application Conference, SIU 2016 |
|---|---|
| Ülke/Bölge | Türkiye |
| Şehir | Zonguldak |
| Periyot | 16/05/16 → 19/05/16 |
Bibliyografik not
Publisher Copyright:© 2016 IEEE.
Keywords
- Analog network coding
- cascaded Rayleigh channels
- fast fading
- mobile-to-mobile communication
- outage probability
- self-interference
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