DocumentCode :
137277
Title :
A numerical investigation of all-analog radio self-interference cancellation
Author :
Gholian, Armen ; Yiming Ma ; Yingbo Hua
Author_Institution :
Dept. of Electr. Eng., Univ. of California, Riverside, Riverside, CA, USA
fYear :
2014
fDate :
22-25 June 2014
Firstpage :
459
Lastpage :
463
Abstract :
Radio self-interference cancellation (SIC) is the fundamental enabler for full-duplex radios. While SIC methods based on baseband digital signal processing and/or beamforming are inadequate, an all-analog method is useful to drastically reduce the self-interference as the first stage of SIC. However, all-analog radio SIC has so far received very little academic attention in terms of its architectural design and performance limit. In this paper, we present such an early effort. We show that a recently used uniform architecture with uniformly distributed RF attenuators has a performance highly dependent on the carrier frequency. We also show that a new architecture with the attenuators distributed in a clustered fashion has important advantages over the uniform architecture. These advantages are shown numerically through random multipath interference channels, number of control bits in step attenuators, attenuation-dependent phases, single and multi-level structures, etc. These insights will be useful in guiding future hardware-based experiments.
Keywords :
array signal processing; interference suppression; multipath channels; numerical analysis; radiofrequency interference; random processes; wireless channels; SIC method; all-analog radio self-interference cancellation; attenuation-dependent phase; baseband digital signal processing; beamforming; clustered fashion distribution; full-duplex radio; multilevel structure; numerical investigation; random multipath interference channel; single-level structure; uniformly distributed RF attenuator; Attenuators; Delays; Interference channels; Radio frequency; Silicon carbide; Wireless communication; all-analog cancellation; full-duplex radio; interference cancellation;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing Advances in Wireless Communications (SPAWC), 2014 IEEE 15th International Workshop on
Conference_Location :
Toronto, ON
Type :
conf
DOI :
10.1109/SPAWC.2014.6941881
Filename :
6941881
Link To Document :
بازگشت