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Robust Linear Precoder Design for Multi-Cell Downlink Transmission

机译:用于多小区下行链路传输的鲁棒线性预编码器设计

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Coordinated information processing by the base stations of multi-cell wireless networks enhances the overall quality of communication in the network. Such coordinations for optimizing any desired network-wide quality of service (QoS) necessitate the base stations to acquire and share some channel state information (CSI). With perfect knowledge of channel states, the base stations can adjust their transmissions for achieving a network-wise QoS optimality. In practice, however, the CSI can be obtained only imperfectly. As a result, due to the uncertainties involved, the network is not guaranteed to benefit from a globally optimal QoS. Nevertheless, if the channel estimation perturbations are confined within bounded regions, the QoS measure will also lie within a bounded region. Therefore, by exploiting the notion of robustness in the worst-case sense some worst-case QoS guarantees for the network can be asserted. We adopt a popular model for noisy channel estimates that assumes that estimation noise terms lie within known hyper-spheres. We aim to design linear transceivers that optimize a worst-case QoS measure in downlink transmissions. In particular, we focus on maximizing the worst-case weighted sum-rate of the network and the minimum worst-case rate of the network. For obtaining such transceiver designs, we offer several centralized (fully cooperative) and distributed (limited cooperation) algorithms which entail different levels of complexity and information exchange among the base stations.
机译:多小区无线网络的基站进行的协调信息处理提高了网络中通信的整体质量。这种用于优化任何期望的全网络服务质量(QoS)的协调使得基站必须获取并共享一些信道状态信息(CSI)。凭借对信道状态的完美了解,基站可以调整其传输,以实现网络级QoS最佳化。但是,实际上,CSI不能完美地获得。结果,由于所涉及的不确定性,不能保证网络受益于全局最优的QoS。然而,如果将信道估计扰动限制在有界区域内,则QoS度量也将位于有界区域内。因此,通过在最坏情况下利用鲁棒性的概念,可以断言网络的某些最坏情况QoS保证。对于噪声信道估计,我们采用一种流行的模型,该模型假设估计噪声项位于已知的超球体内。我们旨在设计可优化下行链路传输中最坏情况QoS措施的线性收发器。特别是,我们专注于最大化网络的最坏情况加权总和率和最小的网络最坏情况率。为了获得这种收发器设计,我们提供了几种集中式(完全协作)和分布式(有限协作)算法,这些算法需要不同级别的复杂性和基站之间的信息交换。

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