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Low-Bit Rate Feedback Strategies for Iterative IA-Precoded MIMO-OFDM-Based Systems

机译:迭代IA-Emboded MIMO-OFDM系统的低比特率反馈策略

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Interference alignment (IA) is a promising technique that allows high-capacity gains in interference channels, but which requires the knowledge of the channel state information (CSI) for all the system links. We design low-complexity and low-bit rate feedback strategies where a quantized version of some CSI parameters is fed back from the user terminal (UT) to the base station (BS), which shares it with the other BSs through a limited-capacity backhaul network. This information is then used by BSs to perform the overall IA design. With the proposed strategies, we only need to send part of the CSI information, and this can even be sent only once for a set of data blocks transmitted over time-varying channels. These strategies are applied to iterative MMSE-based IA techniques for the downlink of broadband wireless OFDM systems with limited feedback. A new robust iterative IA technique, where channel quantization errors are taken into account in IA design, is also proposed and evaluated. With our proposed strategies, we need a small number of quantization bits to transmit and share the CSI, when comparing with the techniques used in previous works, while allowing performance close to the one obtained with perfect channel knowledge.
机译:干扰对准(IA)是一种有希望的技术,其允许干扰通道中的高容量增益,但是这需要对所有系统链路的信道状态信息(CSI)的知识。我们设计低复杂性和低比特率反馈策略,其中一些CSI参数的量化版本被从用户终端(UT)反馈到基站(BS),该基站(BS)将其与其他BS共享,通过有限容量回程网络。然后,BSS使用该信息来执行整体IA设计。通过拟议的策略,我们只需要发送部分CSI信息,甚至可以仅为一组数据块发送一次,这甚至可以仅发送一次,这是通过时变通道传输的一组数据块。这些策略应用于具有有限反馈的宽带无线OFDM系统的下行链路的迭代MMSE的IA技术。还提出和评估了一种新的鲁棒迭代IA技术,其中考虑了IA设计的信道量化误差。通过我们提出的策略,当与先前作品中使用的技术相比,我们需要少量的量化位来传输和共享CSI,同时允许使用完美渠道知识获得的性能。

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