首页> 外文会议>Personal Mobile Communications Conference, 2003. 5th European (Conf. Publ. No. 492) >Radio link performance using coherent adaptive antenna array diversity receiver coupled with inter-cell macro diversity in W-CDMA reverse link
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Radio link performance using coherent adaptive antenna array diversity receiver coupled with inter-cell macro diversity in W-CDMA reverse link

机译:在W-CDMA反向链路中使用相干自适应天线阵列分集接收机和小区间宏分集的无线链路性能

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This paper investigates by laboratory and field experiments the inter-cell macro diversity effect in the coherent adaptive antenna array diversity (CAAAD) receiver in the W-CDMA reverse link. We propose a fast receiver antenna weight convergence method for the destination cell site at the beginning of inter-cell macro diversity in which the transmission power of the user equipment (UE) is temporarily increased over a very short interval by increasing the target E/sub b//I/sub o/ (signal energy per bit-to-interference plus background noise power spectrum density ratio) in fast transmission power control (TPC) of the original cell site. The experimental results elucidate that this increase in the transmission power of the UE brings about a significantly fast convergence of the receiver antenna weights or the destination cell site, which is caused by the improved received signal-to-interference plus background noise power ratio (SIR). Furthermore, in inter-cell macro diversity, since the transmission power of the UE is controlled according to the TPC bits from the dominant base transceiver station (BTS), the received E/sub b//I/sub o/ of another BTS with greater path loss becomes much lower than that of the dominant BTS. Field experimental results for the average moving speed of approximately 30 km/h elucidate that even under such severe conditions, the receiver beam patterns at both BTSs are accurately generated and updated by satisfactorily tracking the movement of the UE. Consequently, the field experiments clarify that the required average transmission power of the UE at the average block error rate (BLER) of 10/sup -2/ with inter-cell macro diversity associated CAAAD reception at a BTS used between two cell sites is decreased by approximately 2.0 dB compared bared to that with a one-cell site connection caused by the beneficial space diversity effect against shadowing and instantaneous fading variation.
机译:本文通过实验室和现场实验研究了W-CDMA反向链路中相干自适应天线阵列分集(CAAAD)接收机中的小区间宏分集效应。我们提出了一种在小区间宏分集开始时针对目标小区站点的快速接收机天线权重收敛方法,该方法通过增加目标E / sub在非常短的时间间隔内临时增加用户设备(UE)的发射功率在原始小区站点的快速传输功率控制(TPC)中,b // I / sub o /(每位干扰的信号能量加上背景噪声功率谱密度比)。实验结果表明,UE发射功率的这种增加带来了接收机天线权重或目标小区站点的显着快速收敛,这是由改善的接收信号干扰和背景噪声功率比(SIR)引起的。 )。此外,在小区间宏分集中,由于根据来自显性基站收发器(BTS)的TPC位来控制UE的传输功率,因此接收到的另一个BTS的E / sub b // I / sub o /具有更大的路径损耗变得比主要的BTS更低。平均移动速度约为30 km / h的现场实验结果表明,即使在如此恶劣的条件下,两个BTS的接收器波束方向图也可以通过令人满意地跟踪UE的运动而准确生成和更新。因此,现场实验表明,在两个小区站点之间使用的BTS处,与小区间宏分集相关的CAAAD接收,UE在平均块错误率(BLER)为10 / sup -2 /的情况下所需的UE平均发送功率降低了相对于单小区站点连接的噪声,由于对阴影和瞬时衰落变化的有益的空间分集效应而导致的噪声降低了约2.0 dB。

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