Title :
Dual methods for nonconvex spectrum optimization of multicarrier systems
Author :
Yu, Wei ; Lui, Raymond
Author_Institution :
Edward S. Rogers Sr. Electr. & Comput. Eng. Dept., Toronto Univ., Ont.
fDate :
7/1/2006 12:00:00 AM
Abstract :
The design and optimization of multicarrier communications systems often involve a maximization of the total throughput subject to system resource constraints. The optimization problem is numerically difficult to solve when the problem does not have a convexity structure. This paper makes progress toward solving optimization problems of this type by showing that under a certain condition called the time-sharing condition, the duality gap of the optimization problem is always zero, regardless of the convexity of the objective function. Further, we show that the time-sharing condition is satisfied for practical multiuser spectrum optimization problems in multicarrier systems in the limit as the number of carriers goes to infinity. This result leads to efficient numerical algorithms that solve the nonconvex problem in the dual domain. We show that the recently proposed optimal spectrum balancing algorithm for digital subscriber lines can be interpreted as a dual algorithm. This new interpretation gives rise to more efficient dual update methods. It also suggests ways in which the dual objective may be evaluated approximately, further improving the numerical efficiency of the algorithm. We propose a low-complexity iterative spectrum balancing algorithm based on these ideas, and show that the new algorithm achieves near-optimal performance in many practical situations
Keywords :
concave programming; digital subscriber lines; iterative methods; digital subscriber lines; iterative spectrum balancing algorithm; multicarrier systems; multiuser spectrum optimization problems; nonconvex spectrum optimization; optimal spectrum balancing algorithm; time-sharing condition; Communication systems; Constraint optimization; DSL; Design optimization; Discrete Fourier transforms; H infinity control; Iterative algorithms; OFDM modulation; Optimization methods; Time sharing computer systems; Digital subscriber lines (DSLs); discrete multitone (DMT); duality theory; dynamic spectrum management (DSM); iterative spectrum balancing (ISB); nonconvex optimization; optimal spectrum balancing (OSB); orthogonal frequency-division multiplex (OFDM);
Journal_Title :
Communications, IEEE Transactions on
DOI :
10.1109/TCOMM.2006.877962