Title :
The Capacity Region of Frequency-Selective Gaussian Interference Channels Under Strong Interference
Author :
Chung, Seong Taek ; Cioffi, John M.
Author_Institution :
ASSIA Inc., Redwood City
Abstract :
This paper presents the capacity region of frequency-selective Gaussian interference channels under the condition of strong interference, assuming an average power constraint per user. First, a frequency-selective Gaussian interference channel is modeled as a set of independent parallel memoryless Gaussian interference channels. Using nonfrequency selective results, the capacity region of frequency-selective Gaussian interference channels under strong interference is expressed mathematically. Exploiting structures inherent in the problem, a dual problem is constructed for each independent memoryless channel, in which both mathematical and numerical analysis are performed. Furthermore, three suboptimal methods are compared to the capacity-achieving coding and power allocation scheme. Iterative waterfilling, a suboptimal scheme, provides close-to-optimum performance and has a distributed coding and power allocation scheme, which are attractive in practice.
Keywords :
Gaussian channels; channel capacity; interference (signal); numerical analysis; Gaussian interference channels; capacity achieving coding; capacity region; distributed coding; frequency selective channels; independent memoryless channel; iterative waterfilling; mathematical analysis; nonfrequency selective results; numerical analysis; point-to-point link; power allocation; strong interference; suboptimal methods; Decoding; Frequency; Gaussian channels; Helium; Interference channels; Interference constraints; Memoryless systems; Numerical analysis; Performance analysis; Transmitters; Capacity region; Gaussian-interference channel; frequency-selective channel; multicarrier systems; multiuser systems;
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2007.904406