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Space-Time Interference Alignment and Degree-of-Freedom Regions for the MISO Broadcast Channel With Periodic CSI Feedback

机译:具有周期CSI反馈的MISO广播信道的时空干扰对准和自由度区域

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This paper characterizes the degree-of-freedom (DoF) regions for the multiuser vector broadcast channel with periodic channel state information (CSI) feedback. As a part of the characterization, a new transmission method called space-time interference alignment is proposed, which exploits both the current and past CSI jointly. Using the proposed alignment technique, an inner bound of the sum-DoF region is characterized as a function of a normalized CSI feedback frequency, which measures CSI feedback speed compared to the speed of user's channel variations. One consequence of the result is that the achievable sum-DoF gain is improved significantly when a user sends back both current and outdated CSI compared to the case where the user sends back current CSI only. Then, a tradeoff between CSI feedback delay and the sum-DoF gain is characterized for the multiuser vector broadcast channel in terms of a normalized CSI feedback delay that measures CSI obsoleteness compared to channel coherence time. A crucial insight is that it is possible to achieve the optimal DoF gain if the feedback delay is less than a derived fraction of the channel coherence time. This precisely characterizes the intuition that a small delay should be negligible.
机译:本文利用周期信道状态信息(CSI)反馈来表征多用户矢量广播信道的自由度(DoF)区域。作为表征的一部分,提出了一种称为时空干扰对准的新传输方法,该方法可以同时利用当前和过去的CSI。使用提出的对准技术,sum-DoF区域的内边界被表征为归一化CSI反馈频率的函数,该归一化CSI反馈频率与用户信道变化的速度相比,测量CSI反馈速度。结果的一个结果是,与仅回传当前CSI的情况相比,当用户回传当前和过时的CSI时,可实现的sum-DoF增益得到了显着改善。然后,根据归一化的CSI反馈延迟来表征多用户矢量广播信道的CSI反馈延迟与总和DoF增益之间的折衷,该标准化的CSI反馈延迟与信道相干时间相比测量CSI过时。至关重要的见解是,如果反馈延迟小于信道相干时间的导出分数,则有可能获得最佳DoF增益。这恰好体现了直觉,即小延迟应该可以忽略不计。

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