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MIMO Spatial Mode Adaptation at the Cell Edge Using Interferer Spatial Correlation

机译:使用干扰空间相关性在小区边缘进行MIMO空间模式自适应

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In conventional MIMO cellular systems, the spatial transmission mode, e.g. spatial multiplexing or transmit diversity, is chosen independently in each cell. Unfortunately, the optimum transmission mode for users that are interference limited depends to a large extent on the transmission mode used by interfering base stations. This paper proposes interference-aware link adaptation where base stations exchange their transmission plans with neighboring base stations and broadcast this information to the active users. Each user measures its long term susceptibility to spatial interference and returns this information to the base station via a spatial mode table. The base stations then schedule active users according to the decisions made in interfering base stations and the preferred transmission strategies of its own users. Simulations illustrate the ergodic sum rate the performance of switching between spatial multiplexing and statistical beamforming in different spatially correlated channels.
机译:在常规的MIMO蜂窝系统中,空间传输模式,例如,传输模式,例如,在每个小区中独立选择空间复用或发射分集。不幸的是,受干扰限制的用户的最佳传输模式在很大程度上取决于干扰基站所使用的传输模式。本文提出了感知干扰的链路自适应方法,其中基站与相邻基站交换其传输计划,并将此信息广播给活动用户。每个用户测量其对空间干扰的长期敏感性,并通过空间模式表将该信息返回给基站。然后,基站根据在干扰基站中做出的决策及其自己的用户的首选传输策略来调度活动用户。仿真说明了遍历总速率在不同空间相关信道中在空间复用和统计波束形成之间切换的性能。

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