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Transmit beamforming and power control for cellular wireless systems

机译:蜂窝无线系统的发射波束成形和功率控制

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摘要

Joint power control and beamforming schemes are proposed for cellular systems where adaptive arrays are used only at base stations. In the uplink, mobile power and receiver diversity combining vectors at the base stations are calculated jointly. The mobile transmitted power is minimized, while the signal-to-interference-and-noise ratio (SINR) at each link is maintained above a threshold. A transmit diversity scheme for the downlink is also proposed where the transmit weight vectors and downlink power allocations are jointly calculated such that the SINR at each mobile is above a target value. The proposed algorithm achieves a feasible solution for the downlink if there is one and minimizes the total transmitted power in the network. In a reciprocal network it can be implemented in a decentralized system, and it does not require global channel response measurements. In a nonreciprocal network, where the uplink and downlink channel responses are different, the proposed transmit beamforming algorithm needs to be implemented in a centralized system, and it requires a knowledge of the downlink channel responses. The performances of these algorithms are compared with previously proposed algorithms through numerical studies.
机译:提出了针对仅在基站处使用自适应阵列的蜂窝系统的联合功率控制和波束成形方案。在上行链路中,基站处的移动功率和接收机分集组合向量是联合计算的。移动发射功率被最小化,而每条链路上的信噪比(SINR)则保持在阈值以上。还提出了用于下行链路的发射分集方案,其中,共同计算发射权重向量和下行链路功率分配,以使每个移动台的SINR均高于目标值。该算法为下行链路(如果存在)提供了一种可行的解决方案,并将网络中的总发射功率降至最低。在互惠网络中,它可以在分散系统中实现,并且不需要全局信道响应测量。在上行和下行信道响应不同的非互惠网络中,建议的发射波束成形算法需要在集中式系统中实现,并且需要了解下行链路信道响应。通过数值研究将这些算法的性能与先前提出的算法进行了比较。

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