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Analysis of Cyclic Delay Diversity on DVB-H Systems over Spatially Correlated Channel

机译:空间相关信道上DVB-H系统的循环延迟分集分析

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The objective of this work is to research and analyse the performance of Cyclic Delay Diversity (CDD) with two transmit antenna on DVB-H systems operating in spatially correlated channel. It is shown in this paper that CDD can achieve desirable transmit diversity gain over uncorrelated channel with or without receiver diversity. However, in reality, the respective signal paths between spatially separated antennas and the mobile receiver is likely to be correlated because of insufficient antenna separation at the transmitter and the lack of scattering effect of the channel. Under this spatially correlated channel, it is apparent that CDD cannot achieve the same diversity gain as obtained under the uncorrelated channel. In this paper, a new upper bound on the pairwise error probability (PEP) of the CDD with spatial correlation of two transmit antennas is derived. The upper bound is used to study the CDD theoretical error performance and diversity gain losses over a generalized spatially correlated Rayleigh channel. This theoretical analysis is validated by the simulation of DVB-H systems with two transmit antennas and the CDD scheme. Both the theoretical and simulated results give the valuable insight that the CDD ability to perform well with a certain amount of channel correlation
机译:这项工作的目的是研究和分析在空间相关信道上运行的DVB-H系统上带有两个发射天线的循环延迟分集(CDD)的性能。本文表明,在有或没有接收机分集的情况下,CDD都能在不相关的信道上获得理想的发射分集增益。然而,实际上,由于发射机处的天线间隔不足以及信道的散射效应不足,因此空间上分离的天线与移动接收机之间的各个信号路径可能相关。在这个空间相关的信道下,很明显CDD无法获得与不相关信道下相同的分集增益。本文推导了具有两个发射天线空间相关性的CDD的成对错误概率(PEP)的新上限。上限用于研究广义空间相关瑞利信道上的CDD理论误差性能和分集增益损失。通过对具有两个发射天线的DVB-H系统和CDD方案的仿真,验证了这一理论分析。理论和模拟结果均提供了宝贵的见解,即CDD在一定数量的信道相关性下表现良好的能力

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