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Pilot Symbol-Assisted Decision-Directed Coherent Adaptive Array Diversity for DS-CDMA Mobile Radio Reverse Link

机译:DS-CDMA移动无线电反向链路的先导符号辅助决策指导相干自适应阵列分集

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摘要

Pilot symbol-assisted (PSA) decision-directed coherent adaptive array diversity (CAAD) is proposed for increasing the reverse link capacity of DS-CDMA mobile radio systems. In the proposed scheme, PSA channel estimation is applied to coherent Rake combining, and the weights of the antenna array are adaptively updated using both pilot symbols and decision-directed data symbols after Rake combining as references for minimum mean squared error (MMSE) criteria. The reverse link capacity of a 3-sectored base station is evaluated by computer simulation when fast transmit power control (TPC) based on signal-to-interference plus background noise power ratio (SIR) measurement is applied under multipath Rayleigh fading environments. It is shown that a 6-element (sector) CAAD receiver can increase the capacity to about 4.2 times that with a single antenna (per sector) receiver when links are interference-limited. The link capacity achievable with the 6-element CAAD receiver is 1.2 times that with a 6-branch antenna diversity receiver with antenna spacing of 10 carrier wavelengths, while significantly reducing the strong interference from high bit rate transmission (high transmit power) users.
机译:为了增加DS-CDMA移动无线电系统的反向链路容量,提出了导频符号辅助(PSA)决策导向相干自适应阵列分集(CAAD)。在提出的方案中,将PSA信道估计应用于相干Rake合并,并在Rake合并后使用导频符号和决策定向数据符号两者作为最小均方误差(MMSE)准则的参考,自适应更新天线阵列的权重。当在多径瑞利衰落环境下应用基于信号干扰和背景噪声功率比(SIR)测量的快速发射功率控制(TPC)时,可通过计算机仿真来评估3扇区基站的反向链路容量。结果表明,当链路受干扰限制时,一个六元素(扇区)的CAAD接收机可以将容量提高到单个天线(每个扇区)的4.2倍。 6元素CAAD接收器可实现的链路容量是6分支天线分集接收器(天线间隔为10载波波长)的链路容量的1.2倍,同时显着减少了来自高比特率传输(高发射功率)用户的强烈干扰。

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