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An Adaptive Sub-carrier and Power Allocation Algorithm with QoS Guarantee for OFDMA System

机译:一种自适应子载波和电力分配算法对OFDMA系统的QoS保证

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This paper presents an adaptive sub-carrier and power allocation scheme for orthogonal frequency division multiple access (OFDMA) systems according to their different quality of service (QoS) requirements and traffic type. The algorithm maximized the transmission data rate while satisfying total power constraint and a certain bit error rate (BER) requirement. A greedy algorithm known to be the most efficient algorithm for this problem can provide a high quality optimal solution, but has the disadvantage of incurring a long computation time. This problem should be solved in a real-time environment. The proposed algorithm not only avoids the high complexity but also provides considerable universality and flexibility for both the fixed rate voice data and variable rate multimedia data of the broadband wireless communication. It mainly consists of two steps. The first is the allocation of sub-carriers and power alternately to the real-time user. The second is the residual resource distribution to the non-real-time users. The simulation results demonstrate that the scheme has computational advantages over the conventional algorithms while providing the QoS guarantee.
机译:本文根据其不同的服务质量(QoS)要求和业务类型,提出了一种自适应子载波和功率分配方案,用于正交频分多址(OFDMA)系统。该算法在满足总功率约束的同时最大化传输数据速率和一定的误码率(BER)要求。已知是该问题最有效的算法的贪婪算法可以提供高质量的最佳解决方案,但具有导致长计算时间的缺点。这个问题应该在实时环境中解决。所提出的算法不仅避免了高复杂性,而且还为宽带无线通信的固定速率语音数据和可变速率多媒体数据提供了相当大的普遍性和灵活性。它主要包括两个步骤。首先是分配子载波和权力,交替地到实时用户。第二个是非实时用户的剩余资源分发。仿真结果表明,该方案具有通过传统算法的计算优势,同时提供QoS保证。

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