首页> 外文会议>2009 First UK-India International Workshop on Cognitive Wireless Systems >Adaptive subcarrier and bit allocation techniques for MIMO-OFDMA based uplink cognitive radio networks
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Adaptive subcarrier and bit allocation techniques for MIMO-OFDMA based uplink cognitive radio networks

机译:基于MIMO-OFDMA的上行认知无线网络的自适应子载波和比特分配技术

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We propose an adaptive radio resource allocation algorithm for a multiple-input multiple-output (MIMO) orthogonal frequency division multiple access (OFDMA) based uplink cognitive radio network (CRN). The CRN has multiple secondary users (SUs) coexisting with multiple primary users (PUs). The aim is to admit as many SUs as possible in various subcarriers while ensuring no interference is leaked to PUs. This is achieved by letting the SUs to transmit signals through the null-space of the channels seen between SUs and the primary network basestation (PNBS). Subcarriers are allocated based on the correlation coefficient of the left singular vector of the MIMO channels seen between various SUs and the secondary network basestation (SNBS). Once the SUs are allocated in various subcarriers, the radio resource management in terms of power and bit allocation is performed on a per user basis using an integer linear programming framework. The performance of the algorithm has been evaluated using simulation results.
机译:我们为基于多输入多输出(MIMO)正交频分多址(OFDMA)的上行链路认知无线电网络(CRN)提出了一种自适应无线电资源分配算法。 CRN具有与多个主要用户(PU)共存的多个次要用户(SU)。目的是在各种子载波中允许尽可能多的SU,同时确保没有干扰泄漏到PU。这是通过让SU通过在SU与主网络基站(PNBS)之间看到的信道的空空间传输信号来实现的。基于在各个SU与次级网络基站(SNBS)之间看到的MIMO信道的左奇异矢量的相关系数来分配子载波。一旦在各个子载波中分配了SU,就可以使用整数线性编程框架在每个用户的基础上执行功率和比特分配方面的无线电资源管理。使用仿真结果评估了算法的性能。

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