Title :
On the sum-rate capacity of a 2-user Multiple Access Wiretap Channel with one secret user
Author :
Karmakar, Sanjay
Author_Institution :
Dept. of Electr. & Comput. Eng., North Dakota State Univ., Fargo, ND, USA
Abstract :
We consider a 2-user Gaussian Multiple-Access Wiretap channel (MA-WC), with the unintended receiver having access to signal from only one of the two transmitters. We have characterized the sum-rate capacity of this channel within .5 bits and proved that Gaussian signalling at the transmitters is approximate sum-rate capacity optimal. For the scenario when the additive noise plus the signal from first transmitter have a combined strength poorer than the additive noise of the evesdropper, the above sum-rate capacity characterization leads to an approximate capacity region characterization for the channel. It is shown that, under this circumstances, a timesharing scheme between the two users can achieve the capacity region of the channel within .25 bits. It has been proved (Xie and Ulukus, ISIT 2013 [1]) recently that on a Multiple-Access Wiretap channel interference alignment (IA) is necessary to achieve optimal performance. Our channel model is an interesting variation of the MA-WC for which IA is not necessary and independent Gaussina signalling is sufficient to achieve the optimal sum-rate within .5 bits.
Keywords :
Gaussian channels; multi-access systems; radio transmitters; telecommunication signalling; 2-user Gaussian multiple-access wiretap channel; 2-user multiple access wiretap channel; Gaussian signalling; ISIT 2013; additive noise plus; capacity region characterization; channel model; independent Gaussina signalling; multiple-access wiretap channel interference alignment; secret user; sum-rate capacity characterization; sum-rate capacity optimal; time-sharing scheme; transmitters; Additive noise; Channel capacity; Equations; Linear matrix inequalities; Optimization; Receivers; Transmitters;
Conference_Titel :
Wireless Communications, Vehicular Technology, Information Theory and Aerospace & Electronic Systems (VITAE), 2014 4th International Conference on
Conference_Location :
Aalborg
Print_ISBN :
978-1-4799-4626-6
DOI :
10.1109/VITAE.2014.6934477