Multicast resource allocation with min-rate requirements in OFDM systems
This article addresses the multicast resource allocation problem with min-rate requirement constraints in orthogonal frequency division multiplexing (OFDM) systems. Due to the prohibitively high complexity for nonlinear and combinatorial optimization, the original problem is relaxed and reformulated...
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Veröffentlicht in: | Journal of China universities of posts and telecommunications 2010-06, Vol.17 (3), p.24-30 |
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description | This article addresses the multicast resource allocation problem with min-rate requirement constraints in orthogonal frequency division multiplexing (OFDM) systems. Due to the prohibitively high complexity for nonlinear and combinatorial optimization, the original problem is relaxed and reformulated to form a standard optimization problem. By theoretical derivation according to the Karush-Kuhn-Tucker (KKT) conditions, two propositions are presented as the necessary criteria for optimality. Furthermore, a two-step resource allocation scheme, including subcarrier assignment and power allocation, is proposed on a basis of the propositions for practical implementation. With the rain-rate based multicast group order, subcarriers are assigned in a greedy fashion to maximize the capacity. When subcarrier assignment is determined, the proposed power allocation can achieve the optimal performance for the rain-rate constrained capacity maximization with an acceptable complexity. Simulation results indicate that the proposed scheme approximates to optimal resource allocation obtained by exhaustive search with a negligible capacity gap, and considerably outperforms equal power distribution. Meanwhile, multicast is remarkably beneficial to resource utilization in OFDM systems. |
doi_str_mv | 10.1016/S1005-8885(09)60475-1 |
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Due to the prohibitively high complexity for nonlinear and combinatorial optimization, the original problem is relaxed and reformulated to form a standard optimization problem. By theoretical derivation according to the Karush-Kuhn-Tucker (KKT) conditions, two propositions are presented as the necessary criteria for optimality. Furthermore, a two-step resource allocation scheme, including subcarrier assignment and power allocation, is proposed on a basis of the propositions for practical implementation. With the rain-rate based multicast group order, subcarriers are assigned in a greedy fashion to maximize the capacity. When subcarrier assignment is determined, the proposed power allocation can achieve the optimal performance for the rain-rate constrained capacity maximization with an acceptable complexity. Simulation results indicate that the proposed scheme approximates to optimal resource allocation obtained by exhaustive search with a negligible capacity gap, and considerably outperforms equal power distribution. Meanwhile, multicast is remarkably beneficial to resource utilization in OFDM systems.</description><identifier>ISSN: 1005-8885</identifier><identifier>DOI: 10.1016/S1005-8885(09)60475-1</identifier><language>eng</language><publisher>Elsevier Ltd</publisher><subject>Allocations ; Combinatorial analysis ; Complexity ; min-rate requirements ; Multicast ; OFDM ; OFDM系统 ; Optimization ; Orthogonal Frequency Division Multiplexing ; Resource allocation ; Searching ; Subcarriers ; 优化组合 ; 功率分配 ; 子载波分配 ; 正交频分 ; 资源分配问题 ; 资源利用率</subject><ispartof>Journal of China universities of posts and telecommunications, 2010-06, Vol.17 (3), p.24-30</ispartof><rights>2010 The Journal of China Universities of Posts and Telecommunications</rights><rights>Copyright © Wanfang Data Co. Ltd. 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Due to the prohibitively high complexity for nonlinear and combinatorial optimization, the original problem is relaxed and reformulated to form a standard optimization problem. By theoretical derivation according to the Karush-Kuhn-Tucker (KKT) conditions, two propositions are presented as the necessary criteria for optimality. Furthermore, a two-step resource allocation scheme, including subcarrier assignment and power allocation, is proposed on a basis of the propositions for practical implementation. With the rain-rate based multicast group order, subcarriers are assigned in a greedy fashion to maximize the capacity. When subcarrier assignment is determined, the proposed power allocation can achieve the optimal performance for the rain-rate constrained capacity maximization with an acceptable complexity. Simulation results indicate that the proposed scheme approximates to optimal resource allocation obtained by exhaustive search with a negligible capacity gap, and considerably outperforms equal power distribution. 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Due to the prohibitively high complexity for nonlinear and combinatorial optimization, the original problem is relaxed and reformulated to form a standard optimization problem. By theoretical derivation according to the Karush-Kuhn-Tucker (KKT) conditions, two propositions are presented as the necessary criteria for optimality. Furthermore, a two-step resource allocation scheme, including subcarrier assignment and power allocation, is proposed on a basis of the propositions for practical implementation. With the rain-rate based multicast group order, subcarriers are assigned in a greedy fashion to maximize the capacity. When subcarrier assignment is determined, the proposed power allocation can achieve the optimal performance for the rain-rate constrained capacity maximization with an acceptable complexity. Simulation results indicate that the proposed scheme approximates to optimal resource allocation obtained by exhaustive search with a negligible capacity gap, and considerably outperforms equal power distribution. Meanwhile, multicast is remarkably beneficial to resource utilization in OFDM systems.</abstract><pub>Elsevier Ltd</pub><doi>10.1016/S1005-8885(09)60475-1</doi><tpages>7</tpages></addata></record> |
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subjects | Allocations Combinatorial analysis Complexity min-rate requirements Multicast OFDM OFDM系统 Optimization Orthogonal Frequency Division Multiplexing Resource allocation Searching Subcarriers 优化组合 功率分配 子载波分配 正交频分 资源分配问题 资源利用率 |
title | Multicast resource allocation with min-rate requirements in OFDM systems |
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