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Achievable DoF Regions of MIMO Networks With Imperfect CSIT

机译:CSIT不完美的MIMO网络可达到的DoF区域

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We focus on a two-receiver multiple-input-multiple-output (MIMO), broadcast channel (BC), and interference channel (IC) with an arbitrary number of antennas at each node. We assume an imperfect knowledge of local channel state information at the transmitters, whose error decays with the signal-to-noise-ratio. With such configuration, we characterize the achievable degrees-of-freedom (DoF) regions in both BC and IC, by proposing a rate-splitting (RS) approach, which divides each receiver’s message into a common part and a private part. Compared with the RS scheme designed for the symmetric MIMO case, the novelties of the proposed block lie in: 1) delivering additional non-ZF-precoded private symbols to the receiver with the greater number of antennas and 2) a space-time implementation. These features provide more flexibilities in balancing the common-message-decodabilities at the two receivers, and fully exploit asymmetric antenna arrays. Besides, in IC, we modify the power allocation designed for the asymmetric BC based on the signal space, where the two transmitted signals interfere with each other. We also derive an outer-bound for the DoF regions and show that the proposed achievable DoF regions are optimal under some antenna configurations and channel state information at the transmitter side qualities.
机译:我们关注两个节点的多输入多输出(MIMO),广播信道(BC)和干扰信道(IC),每个节点上具有任意数量的天线。我们假设在发射机处对本地信道状态信息的了解不完善,发射机的误差随信噪比而下降。通过这种配置,我们提出了一种速率分离(RS)方法,在BC和IC中描述了可实现的自由度(DoF)区域,该方法将每个接收者的消息分为一个公共部分和一个私有部分。与针对对称MIMO情况设计的RS方案相比,所提出的模块的新颖之处在于:1)使用更多天线将更多的非ZF预编码的私有符号传递给接收器,以及2)时空实现。这些功能为平衡两个接收器的通用消息可解码性提供了更大的灵活性,并充分利用了非对称天线阵列。此外,在IC中,我们根据信号空间修改了为非对称BC设计的功率分配,在此信号传输的两个信号相互干扰。我们还导出了DoF区域的外边界,并表明,在某些天线配置和发射机状态质量下的信道状态信息下,建议的可实现DoF区域最佳。

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