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Coded Modulation With Mismatched CSIT Over MIMO Block-Fading Channels

机译:MIMO衰减信道上CSIT不匹配的编码调制

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摘要

Reliable communication over delay-constrained multiple-input multiple-output (MIMO) block-fading channels with discrete inputs and mismatched (imperfect) channel state information at the transmitter (CSIT) is studied. The CSIT mismatch is modeled as Gaussian random variables, whose variances decay as a power of the signal-to-noise ratio (SNR). A special focus is placed on the large-SNR decay of the error and outage probabilities when power control with long-term power constraints is used. Without explicitly characterizing the corresponding power allocation algorithms, we derive the outage exponent as a function of the system parameters, including the CSIT noise variance exponent and the exponent of the peak power constraint. It is shown that CSIT, even if noisy, is always beneficial and leads to important gains in terms of exponents.
机译:研究了在延迟受限的多输入多输出(MIMO)衰落信道上的可靠通信,该信道具有离散输入并在发射机(CSIT)上具有不匹配的(不完美)信道状态信息。 CSIT不匹配被建模为高斯随机变量,其方差随信噪比(SNR)的幂而衰减。当使用具有长期功率约束的功率控制时,将特别关注误差和停机概率的大SNR衰减。在没有明确表征相应功率分配算法的情况下,我们根据系统参数(包括CSIT噪声方差指数和峰值功率约束指数)得出中断指数。结果表明,即使有噪声,CSIT始终是有益的,并且在指数方面带来了重要的收益。

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