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Joint switched transmit diversity and adaptive modulation in spectrum sharing systems

机译:频谱共享系统中的联合切换发射分集和自适应调制

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Under the scenario of an underlay cognitive radio network, we propose in this paper an adaptive scheme using switched transmit diversity and adaptive modulation in order to minimize the average number of switched branches at the secondary transmitter while increasing the capacity of the secondary link. The proposed switching efficient scheme (SES) uses the scan and wait (SWC) combining technique where a transmission occurs only when a branch with an acceptable performance is found, otherwise data is buffered. In our scheme, the modulation constellation size and the used transmit branch are determined to achieve the highest spectral efficiency with a minimum processing power, given the fading channel conditions, the required error rate performance, and a peak interference constraint to the primary receiver. Selected numerical examples show that the SES scheme minimizes the average number of switched branches for the average and the high secondary signal-to-noise ratio range. This improvement comes at the expense of a small delay introduced by the SWC technique. For reference, we also compare the performance of the SES scheme to the selection diversity scheme (SDS) where the best branch verifying the modulation mode and the interference constraint is always selected.
机译:在底层认知无线电网络的情况下,我们在本文中提出了一种使用交换发射分集和自适应调制的自适应方案,以便在增加辅助链路的容量的同时,最小化辅助发射机处的交换分支的平均数量。提议的交换有效方案(SES)使用扫描和等待(SWC)组合技术,其中仅当找到具有可接受性能的分支时才进行传输,否则将对数据进行缓冲。在我们的方案中,考虑到衰落的信道条件,所需的误码率性能以及对主接收器的峰值干扰约束,确定调制星座图大小和使用的发射支路以最小的处理能力实现最高的频谱效率。选定的数值示​​例表明,SES方案在平均值和较高的次级信噪比范围内,将交换分支的平均数量最小化。这种改进是以SWC技术引入的少量延迟为代价的。作为参考,我们还将SES方案的性能与选择分集方案(SDS)进行了比较,在选择分集方案中,始终选择验证调制模式和干扰约束的最佳分支。

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