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首页> 外文期刊>Selected Areas in Communications, IEEE Journal on >Joint Zero-Forcing Based Precoder Design for QoS-Aware Power Allocation in MIMO Cooperative Cellular Network
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Joint Zero-Forcing Based Precoder Design for QoS-Aware Power Allocation in MIMO Cooperative Cellular Network

机译:MIMO协作蜂窝网络中基于联合零强迫的预编码器设计,用于感知QoS的功率分配

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摘要

We study a cellular system scenario where multiple data streams originating from a base station (BS) targeted to multiple cell-edge mobile stations (MSs) are transmitted via pre-installed cooperative relay stations (RSs) with multiple antennas. Our objective is to guarantee quality-of-service (QoS) in terms of predefined signal-to-noise ratio at such users within the transmit power budgets at BS and RSs while minimizing total transmit power. We propose a novel precoder design method for power allocation between multiple data streams at BS and RS by using joint zero-forcing strategy in order to avoid multiuser interference (MUI) in the signal received by MSs via both the direct and relay links. We also propose low-complexity suboptimal power allocation algorithm. We focus on analyzing the significance of direct link transmission in providing QoS to cell-edge MSs specially when RS is not situated directly between BS and MSs. Simulation results show that considering direct link and using the proposed scheme in such case significantly improves system outage performance compared to existing schemes in the literature which do not consider direct link.
机译:我们研究了一种蜂窝系统方案,其中通过多个天线通过预安装的协作中继站(RS)传输源自以多个小区边缘移动站(MS)为目标的基站(BS)的多个数据流。我们的目标是在BS和RS的发射功率预算范围内,根据此类用户的预定义信噪比,保证服务质量(QoS),同时将总发射功率降至最低。我们提出了一种新颖的预编码器设计方法,用于通过使用联合迫零策略在BS和RS处的多个数据流之间进行功率分配,以避免在MS通过直接链路和中继链路接收的信号中出现多用户干扰(MUI)。我们还提出了低复杂度次优功率分配算法。我们专注于分析直接链路传输在向小区边缘MS提供QoS方面的重要性,特别是当RS不直接位于BS与MS之间时。仿真结果表明,与文献中不考虑直接链接的现有方案相比,考虑直接链接并在这种情况下使用所提出的方案可以显着提高系统的停机性能。

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