DocumentCode :
640025
Title :
Capacity bounds for wireless ergodic fading Broadcast Channels with partial CSIT
Author :
Farsani, Reza K.
Author_Institution :
Sch. of Cognitive Sci., Inst. for Res. in Fundamental Sci. (IPM), Tehran, Iran
fYear :
2013
fDate :
7-12 July 2013
Firstpage :
927
Lastpage :
931
Abstract :
The two-user wireless ergodic fading Broadcast Channel (BC) with partial Channel State Information at the Transmitter (CSIT) is considered. The CSIT is given by an arbitrary deterministic function of the channel state. This characteristic yields a full control over how much state information is available, from perfect to no information. A novel approach is developed to adapt and explicitly evaluate the well-known UV-outer bound for the Gaussian fading channel using the entropy power inequality. Our approach indeed sheds light on the role of broadcast auxiliaries in the fading channel. It is shown that the derived outer bound is optimal for the channel with perfect CSIT. Our bounds are also directly applicable to the case without CSIT which has been recently considered in several papers. Next, the approach is developed to analyze for the fading BC with secrecy. In the case of perfect CSIT, a full characterization of the secrecy capacity region is derived for the channel with common and confidential messages. This result completes a gap in a previous work by Ekrem and Ulukus. For the channel without common message, the secrecy capacity region is also derived when the transmitter has access only to degradedness ordering of the channel.
Keywords :
Gaussian channels; broadcast channels; channel capacity; fading channels; radio transmitters; telecommunication power management; telecommunication security; Gaussian fading channel; UV-outer bound; arbitrary deterministic function; broadcast auxiliaries; channel capacity bounds; confidential messages; entropy power inequality; fading BC; partial CSIT; partial channel state information at the transmitter; perfect CSIT; secrecy capacity region; two-user wireless ergodic fading broadcast channel; Fading; Information theory; Random variables; Receivers; Resource management; Transmitters; Wireless communication;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Information Theory Proceedings (ISIT), 2013 IEEE International Symposium on
Conference_Location :
Istanbul
ISSN :
2157-8095
Type :
conf
DOI :
10.1109/ISIT.2013.6620362
Filename :
6620362
Link To Document :
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