Opportunistic feedback mechanisms for decentralized Network MIMO systems

Sandeep Kottath, D. Gesbert, E. Hardouin
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Abstract

Dense interference-limited wireless networks can rely coordinated multipoint transmission (such as Network MIMO) as a way to improve on spectral efficiency. Unfortunately, Network MIMO requires global channel state information (CSI) at all transmitters, hence places stringent requirements on backhaul rate and even more on latency. As a solution, this paper investigates an emerging design philosophy for CSI that exploits the broadcast nature of wireless which is well suited to dense networks. In our design, feedback is broadcast from each terminal and decoded opportunistically by any overhearing base station which in turn must design opportunistic interference-cancelling precoders. The corresponding precoder design is shown to be equivalent to a decentralized decision problem whose general solution is challenging, yet for which heuristic schemes can be derived. The obtained algorithms are able to capitalize on the opportunistic feedback without the need for global CSI sharing.
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分散网络MIMO系统的机会反馈机制
密集限制干扰的无线网络可以依靠协同多点传输(如网络MIMO)作为提高频谱效率的一种方式。不幸的是,网络MIMO需要所有发射机的全局信道状态信息(CSI),因此对回程速率提出了严格的要求,甚至对延迟提出了更高的要求。作为解决方案,本文研究了CSI的一种新兴设计理念,该理念利用无线的广播特性,非常适合密集网络。在我们的设计中,反馈从每个终端广播,并由任何侦听基站随机解码,而侦听基站又必须设计机会性干扰消除预编码器。相应的预编码器设计等效于一个分散的决策问题,其通解具有挑战性,但可以推导出启发式方案。所获得的算法能够利用机会反馈而不需要全局CSI共享。
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