Single antenna interference cancellation: iterative semi-blind algorithm and performance bound for joint maximum-likelihood interference cancellation

Author(s):  
H. Schoeneich ◽  
P.A. Hoeher
Author(s):  
G. T. Watkins

Abstract Full duplex (FD) could potentially double wireless communications capacity by allowing simultaneous transmission and reception on the same frequency channel. A single antenna architecture is proposed here based on a modified rat-race coupler to couple the transmit and receive paths to the antenna while providing a degree of isolation. To allow the self-interference cancellation (SiC) to be maximized, the rat-race coupler was made tuneable. This compensated for both the limited isolation of the rat race and self-interference caused by antenna mismatch. Tuneable operation was achieved by removing the fourth port of the rat race and inserting a variable attenuator and variable phase shifter into the loop. In simulation with a 50 Ω load on the antenna port, better than −65 dB narrowband SiC was achieved over the whole 2.45 GHz industrial, scientific and medical (ISM) band. Inserting the S-parameters of a commercially available sleeve dipole antenna into the simulation, better than −57 dB narrowband SiC could be tuned over the whole band. Practically, better than −58 dB narrowband tuneable SiC was achieved with a practical antenna. When excited with a 20 MHz Wi-Fi signal, −42 dB average SiC could be achieved with the antenna.


2015 ◽  
Vol 63 (8) ◽  
pp. 3335-3344 ◽  
Author(s):  
Zhi Yao ◽  
Yuanxun Ethan Wang ◽  
Scott Keller ◽  
Gregory P. Carman

Author(s):  
Mário Pereira Véstias

Trellis decoding is used to recover encoded information that was corrupted during transmission over a noisy channel. The Viterbi algorithm is the most well known trellis-based maximum likelihood decoding algorithm. The Viterbi algorithm is executed by a Viterbi decoder. Different hardware solutions may be considered to implement a Viterbi decoder with different design requirements in terms of area, performance, power consumption, among others. The most appropriate solution depends on the metric requirements of the application as well as on the target technology. Properties of the Viterbi algorithm are used to simplify and improve the architecture of the Viterbi decoder. In particular, statistical properties of the Viterbi algorithm are used to design parallel Viterbi decoders with very high data decoding rates. The article focuses on the implementation of a Viterbi decoder in hardware, including optimizations to improve the area and performance.


2019 ◽  
Vol 48 (11) ◽  
pp. 1148017
Author(s):  
申芳芳 SHEN Fang-fang ◽  
苏鑫鑫 SU Xin-xin ◽  
付双林 FU Shuang-lin ◽  
李朝 LI Chao ◽  
杨思成 YANG Si-cheng ◽  
...  

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