Title :
Complexity Analysis of a Heuristic Method for Fixed-Frequency Assignment Including Adjacent Channel Interference
Author :
Chavez-Santiago, Raul ; Gigi, Eli ; Lyandres, Vladimir
Author_Institution :
Univ. of Paris-Sud XI, Orsay
Abstract :
In this paper, we extend an existing heuristic algorithm for fixed-frequency assignment in cellular communication networks in order to account for the effects of adjacent channel interference (ACI). Our algorithm utilizes estimations of carrier-to-interference ratio instead of binary channel separation constraints. The extended algorithm avoids over-optimistic frequency assignments that do not guarantee interference-free operation environments. Its cost is the increased computational complexity. We estimate the upper bound of the algorithm´s complexity when ACI is taken into account. Simulations demonstrate that despite the theoretical high increase in complexity, the algorithm is suitable even for a quasi-dynamic frequency assignment scheme in practical situations. The algorithm enhances the spectrum utilization in cellular networks while reducing harmful interference.
Keywords :
adjacent channel interference; cellular radio; frequency allocation; adjacent channel interference; binary channel separation constraint; carrier-to-interference ratio; cellular communication network; complexity analysis; fixed-frequency assignment; heuristic method; mobile radio spectrum utilization; Cellular networks; Communication networks; Computational complexity; Computational modeling; Costs; Frequency; Heuristic algorithms; Interchannel interference; Interference constraints; Upper bound; Algorithms complexity; cellular communications; frequency assignment; heuristics; interference;
Journal_Title :
Electromagnetic Compatibility, IEEE Transactions on
DOI :
10.1109/TEMC.2007.911937