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Spectral Efficiency Enhancement in Multi-Channel Systems Using Redundant Transmission and Diversity Reception

机译:使用冗余传输和分集接收的多通道系统中的频谱效率增强

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We first consider conventional multi-channel systems with fixed-power variable-rate transmission of independent data streams as a function of channel variations. In these conventional systems, no data is transmitted through the sub-channels whose received signal strength is below a certain cutoff threshold. We then propose new hybrid adaptive modulation and diversity schemes for multi-channel transmission systems. The proposed hybrid schemes attempt to increase the overall spectral efficiency by (i) transmitting redundant information symbols through the deeply faded sub-channels that are not to be used in conventional multi-channel systems and then (ii) diversity combining these replicas at the receiver end. We evaluate the performance of the newly proposed hybrid schemes and compare their spectral efficiency with that of (i) the conventional scheme and (ii) a benchmark scheme which maximizes the overall spectral efficiency but is too complex for practical implementation. We show using some selected numerical examples that the proposed hybrid schemes offer spectral efficiency very close to that of the optimal scheme with much reduced complexity.
机译:我们首先考虑具有独立功率的固定功率可变速率传输的传统多通道系统,它是通道变化的函数。在这些常规系统中,没有数据通过其接收信号强度低于某个截止阈值的子信道传输。然后,我们为多信道传输系统提出了新的混合自适应调制和分集方案。提出的混合方案试图通过(i)通过在常规多信道系统中不使用的深度衰落的子信道发送冗余信息符号,然后(ii)在接收机处分集这些副本来提高整体频谱效率。结束。我们评估了新提出的混合方案的性能,并将其频谱效率与(i)常规方案和(ii)基准方案的频谱效率进行了比较,该基准方案使整体频谱效率最大化,但对于实际实施而言过于复杂。我们使用一些选定的数值示​​例表明,提出的混合方案提供的频谱效率非常接近最佳方案,并且复杂度大大降低。

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