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QoS-Aware Base-Station Selections for Distributed MIMO Links in Broadband Wireless Networks

机译:宽带无线网络中分布式MIMO链路的QoS感知基站选择

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The distributed multiple-input-multiple-output (MIMO) techniques across multiple cooperative base stations (BS) can significantly enhance the capability of the broadband wireless networks in terms of quality-of-service (QoS) provisioning for wireless data transmissions. However, the computational complexity and the interfering range of the distributed MIMO systems also increase rapidly as the number of cooperative BS's increases. In this paper, we propose the QoS-aware BS-selection schemes for the distributed wireless MIMO links, which aim at minimizing the BS usages and reducing the interfering range, while satisfying diverse statistical delay-QoS constraints characterized by the delay-bound violation probability and the effective capacity technique. In particular, based on the channel state information (CSI) and QoS requirements, a subset of BS with variable cardinality for the distributed MIMO transmission is dynamically selected, where the selections are controlled by a central server. For the single-user scenario, we develop two optimization frameworks, respectively, to derive the efficient BS-selection schemes and the corresponding resource allocation algorithms. One framework uses the incremental BS-selection and time-sharing (IBS-TS) strategies, and the other employs the ordered-gain based BS-selection and probabilistic transmissions (OGBS-PT). The IBS-TS framework can yield better performance, while the scheme developed under the OGBS-PT framework is easier to implement. For the multi-user scenario, we propose the optimization framework applying the priority BS-selection, block-diagonalization precoding, and probabilistic transmission (PBS-BD-PT) techniques. We also propose the optimization framework applying the priority BS-selection, time-division-multiple-access, and probabilistic transmission (PBS-TDMA-PT) techniques. We derive the optimal transmission schemes for all the aforementioned frameworks, respectively. Also conducted is a set of simulation ev-n-naluations which compare our proposed schemes with several baseline schemes and show the impact of the delay-QoS requirements, transmit power, and traffic loads on the performances of BS selections for distributed MIMO systems.
机译:多个协作基站(BS)上的分布式多输入多输出(MIMO)技术可以在无线数据传输的服务质量(QoS)设置方面显着增强宽带无线网络的能力。然而,随着协作BS的数量增加,分布式MIMO系统的计算复杂度和干扰范围也迅速增加。在本文中,我们提出了一种用于分布式无线MIMO链路的QoS感知BS选择方案,旨在最小化BS使用并减小干扰范围,同时满足以延迟绑定违规概率为特征的各种统计延迟QoS约束。和有效容量技术。特别地,基于信道状态信息(CSI)和QoS要求,动态选择用于分布式MIMO传输的具有可变基数的BS子集,其中选择由中央服务器控制。对于单用户方案,我们分别开发了两个优化框架,以得出有效的BS选择方案和相应的资源分配算法。一个框架使用增量BS选择和分时(IBS-TS)策略,另一个框架使用基于有序增益的BS选择和概率传输(OGBS-PT)。 IBS-TS框架可以产生更好的性能,而在OGBS-PT框架下开发的方案则更易于实施。对于多用户方案,我们提出了应用优先级BS选择,块对角化预编码和概率传输(PBS-BD-PT)技术的优化框架。我们还提出了应用优先级BS选择,时分多址和概率传输(PBS-TDMA-PT)技术的优化框架。我们分别推导了所有上述框架的最佳传输方案。还进行了一组仿真评估,将我们提出的方案与几种基准方案进行了比较,并显示了延迟QoS要求,发射功率和业务负载对分布式MIMO系统的BS选择性能的影响。

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