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Performance Analysis of Orthogonal Transmit Diversity Over Intra-Cell Interference in WCDMA Downlinks

机译:正交发射多样性对WCDMA下行链路内小区间干扰的性能分析

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This paper extends the traditional orthogonal transmit diversity (OTD) analyses to the multipath intra-cell interference presented in a realistic wideband code-division multiple access (WCDMA) downlink channel. A generic OTD system model is proposed for analyses permitting maximizing the spatial and temporal diversity dimensions for multiple transmit antennas and space-time block code (STBC) respectively. Analytical expressions are derived to evaluate the Chernoff upper bounds on the bit-error rate (BER) for the OTD system under a variety of channel parameters. The expression shows that the BER upper bound can be simplified and determined using an attained signal-to-interference-plus-noise power ratio (SINR) obtained in terms of the number of transmit antennas, the phase difference between two transmit antennas, the channel orthogonality, and the relative cross-correlations of the desired signal to the intra-cell interferers power ratio when equal power allocation at each intra-cell user and perfect channel state information (CSI) are applied in the closed-loop TD system.
机译:本文扩展了传统的正交发射分集(OTD)分析到现实宽带码分频多址(WCDMA)下行链路信道中呈现的多径内部间干扰。提出了一种通用OTD系统模型,用于分析允许分别为多个发射天线和时空块代码(STBC)的空间和时间分集维度最大化。导出分析表达式以在各种信道参数下评估误差率(BER)对误码率(BER)上的CHERNOFF上限。表达式表明,可以使用在发射天线的数量方面获得的达到的信号到干扰 - 加噪声功率比(SINR)来简化和确定BER上界,两个发射天线之间的相位差,通道当在闭环TD系统中应用了当在闭环TD系统中应用了在每个小区间用户和完美信道状态信息(CSI)的等于电力分配时所需信号与单元内干扰的相对交叉相关性。

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