TY - CONF
T1 - Weighted sum throughput maximization in heterogeneous OFDMA networks
AU - Siswantoand, Diky
AU - Zhang, Li
AU - Navaie, Keivan
AU - G C, Deepak
N1 - Note: Published in: 2016 IEEE 83rd Vehicular Technology Conference (VTC Spring). Piscataway, NJ : IEEE. ISBN 9781509016990.
Organising Body: The Institute of Electrical and Electronics Engineers
PY - 2016/5
Y1 - 2016/5
N2 - We formulate the resource allocation in the downlink of heterogeneous orthogonal frequency division multiple access (OFDMA) networks. Our primary objective is to maximize the system sum throughput subject to service and system constraints, including maximum transmit power, quality of service and per-user subchannel allocation. Due to the intercell interference, the corresponding optimization problem is, in fact, nonconvex, that cannot be solved using standard convex optimization techniques. Here we propose an algorithm based on local search method and use of penalty function to approximate the formulated constrained optimization problem by an unconstrained one. To approximate a global optimal, we set escaping procedure from the critical point based on constraint function conditions. The result shows that the proposed method might achieve optimum conditions by a hybrid of split and shared spectrum allocation. Numerical analysis indicates that the proposed algorithm outperform the other conventional methods in the scenario of the high level of inter-cell interference. Moreover, the proposed method approximates the global optimum by considering both channel gain and inter-cell interference with a fast rate of convergence.
AB - We formulate the resource allocation in the downlink of heterogeneous orthogonal frequency division multiple access (OFDMA) networks. Our primary objective is to maximize the system sum throughput subject to service and system constraints, including maximum transmit power, quality of service and per-user subchannel allocation. Due to the intercell interference, the corresponding optimization problem is, in fact, nonconvex, that cannot be solved using standard convex optimization techniques. Here we propose an algorithm based on local search method and use of penalty function to approximate the formulated constrained optimization problem by an unconstrained one. To approximate a global optimal, we set escaping procedure from the critical point based on constraint function conditions. The result shows that the proposed method might achieve optimum conditions by a hybrid of split and shared spectrum allocation. Numerical analysis indicates that the proposed algorithm outperform the other conventional methods in the scenario of the high level of inter-cell interference. Moreover, the proposed method approximates the global optimum by considering both channel gain and inter-cell interference with a fast rate of convergence.
KW - adjacent channel interference
KW - cellular radio
KW - channel allocation
KW - concave programming
KW - frequency division multiple access
KW - OFDM modulation
KW - quality of service
KW - channel gain
KW - numerical analysis
KW - hybrid split-shared spectrum allocation
KW - constraint function condition
KW - formulated constrained optimization problem
KW - penalty function
KW - local search method
KW - nonconvex optimization problem
KW - intercell interference
KW - per-user subchannel allocation
KW - maximum transmit power
KW - heterogeneous orthogonal frequency division multiple-access networks
KW - resource allocation
KW - heterogeneous OFDMA networks
KW - weighted sum throughput maximization
KW - Resource management
KW - Optimization
KW - Interference
KW - Throughput
KW - Quality of service
KW - OFDM
KW - Macrocell networks
U2 - 10.1109/VTCSpring.2016.7504531
DO - 10.1109/VTCSpring.2016.7504531
M3 - Paper
T2 - 2016 IEEE 83rd Vehicular Technology Conference (VTC Spring)
Y2 - 15 May 2016 through 18 May 2016
ER -