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On Cyclic Delay Diversity with Single Carrier OFDM Based Cognitive Radio Networks

机译:基于单载波的循环延迟多样性在基于DM的循环延迟多样性

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摘要

Cyclic Delay Diversity (CDD) is a diversity scheme used in OFDM-based telecommunication systems, transforming spatial diversity into frequency diversity and thus avoiding intersymbol interference without entailing the receiver to be aware of the transmission strategy making the signal more reliable achieving full diversity gain in cooperative systems. Here the analyzation of the influence of CDD-SC scheme in Cognitive Radio Network (CRN) is done with the challenge of overcoming the complication called channel estimation along with overhead in CNR. More specifically, the closed-form expressions for outage probability and symbol error rate are divided under different frequencies among independent and identically distributed (i.i.d.)frequency selective fading channel model i.e., the signal is divided into different frequencies and transmitted among several narrow band channels of different characteristics. It is useful in the reduction of interference and crosstalk. The results reveal the diversity order of the proposed system to be mainly affected by the number of multipath components that are available in the CNR.
机译:循环延迟分集(CDD)是基于OFDM的电信系统中使用的分集方案,将空间分集转换为频率分集,从而避免了偶尔ymbol干扰而不需要接收器来了解传输策略,使得该信号更可靠地实现全部多样性增益合作系统。这里,CDD-SC方案在认知无线电网络(CRN)中的影响是在克服信道估计的挑战和CNR中的开销的挑战进行了挑战。更具体地,用于中断概率和符号误差率的闭合表达式在独立且相同分布的(IID)频率选择衰落信道模型中的不同频率下划分,即,信号被分成不同的频率并在几个窄带通道中传输不同的特征。它可用于减少干扰和串扰。结果揭示了所提出的系统的多样性顺序,主要受CNR中可用的多径组件数量的影响。

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