Title :
Gaussian Interference Channel Capacity to Within One Bit: the General Case
Author :
Etkin, R.H. ; Tse, D.N.C. ; Hua Wang
Author_Institution :
Hewlett-Packard Labs., Palo Alto
Abstract :
The characterization of the capacity region of the two-user Gaussian interference channel has been an open problem for thirty years. The understanding on this problem has been limited. The best known achievable region is due to Han-Kobayashi but its characterization is very complicated. It is also not known how tight the existing outer bounds are. In this work, we extend our results of [1] to general (i.e. possibly asymmetric) channels for the complete capacity region. We show that the existing outer bounds can in fact be arbitrarily loose in some parameter ranges, and by deriving new outer bounds, we show that a simplified Han-Kobayashi type scheme can achieve to within a single bit the capacity for all values of the channel parameters. Using our results, we provide a natural generalization of the point-to-point classical notion of degrees of freedom to interference-limited scenarios.
Keywords :
Gaussian channels; channel capacity; radiofrequency interference; Gaussian interference channel capacity; Han-Kobayashi region; channel parameters; interference-limited scenarios; point-to-point classical notion; Additive white noise; Channel capacity; Decoding; Engineering profession; Frequency; Interference channels; Laboratories; Radio spectrum management; Recycling; Wireless communication;
Conference_Titel :
Information Theory, 2007. ISIT 2007. IEEE International Symposium on
Conference_Location :
Nice
Print_ISBN :
978-1-4244-1397-3
DOI :
10.1109/ISIT.2007.4557543