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Efficient common channel transmission employing multi-beam antennas for adaptive antenna array transmit diversity in W-CDMA forward link

机译:有效的公共信道传输,采用多光束天线,用于自适应天线阵列在W-CDMA前向链路中传输分集

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摘要

This paper proposes an efficient transmission method for common channels such as the common control physical channel (CCPCH) that utilizes multi-beam antennas instead of the conventional sectored antenna to achieve a harmonized adaptive antenna array beam forming system in the W-CDMA forward link. In the proposed method, by transmitting common channels using multi-beam antennas associated with fixed transmitter antenna weights, the transmission powers of the common channels are dispersed over all the array antennas with which dedicated physical channels (DPCHs) are transmitted by adaptive antenna array beam forming, thereby avoiding unnecessary additional sectored antennas and power amplifiers with high transmission power. The simulation results elucidate that the multi-beam transmission with a conformal array antenna arrangement suppresses the variance in the transmission power of the common channels among the array antennas more than does a linear array antenna arrangement. The results also show that when the conformal array antenna arrangement employing eight antennas is used, the maximum transmission power per antenna is reduced by approximately 4.6 dB compared to that using sectored-antenna transmission, and the variance in the transmission powers among array antennas is less than 2.5 dB. We also show that from the viewpoint of the achievable received signal-to-interference power ratio (SIR) and bit error rate (BER) performance of the CCPCH, the proposed common channel transmission using equal angle-spacing beam is slightly superior to the conventional sectored-antenna transmission.
机译:本文提出了一种高效的传输方法,其用于公共信道(如公共控制物理信道(CCPCH)),其利用多光束天线而不是传统的扇形天线,以实现W-CDMA前向链路中的协调的自适应天线阵列束形成系统。在所提出的方法中,通过使用与固定发射器天线权重相关联的多光束天线发送公共信道,公共信道的传输功率分散在所有阵列天线上,通过自适应天线阵列波束传输专用物理通道(DPCH)形成,从而避免了具有高传输功率的不必要的额外扇形天线和功率放大器。仿真结果阐明了具有共形阵列天线布置的多光束传输抑制了阵列天线中公共信道的传输功率的方差,而不是线性阵列天线布置。结果还表明,当使用采用八个天线的共形阵列天线布置时,与使用扇形天线传输相比,每个天线的最大传输功率减小大约4.6dB,并且阵列天线之间的传输功率的变化较小超过2.5 dB。我们还表明,从可实现的接收信号到干扰功率比(SIR)和钻头错误率(BER)性能的CCPCH的观点来看,使用相等角度间距光束的所提出的公共信道传输略微优于传统扇形天线传输。

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