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On channels with partial channel state information at the transmitter

机译:在发射机上具有部分信道状态信息的信道上

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摘要

We consider an independent and identically distributed (i.i.d.) state-dependent channel with partial (rate-limited) channel state information (CSI) at the transmitter (CSIT) and full CSI at the receiver (CSIR). The CSIT comprises two parts, both subject to a rate constraint, and communicated over noiseless way-side channels. The first part is coded CSI, provided by a third party (a genie), and the second part is the output of a deterministic scalar quantizer of the state. A single-letter expression for the capacity of the channel is given. In case the CSIT comprises only the coded part, we show that the capacity previously suggested in the literature is too optimistic, and suggest a correction as part of our expression for the information capacity. For the general setting, an optimal coding scheme based upon multiplexing of several codebooks is presented. It is proved that the capacity of the channel is the same whether the quantizer's output is observed causally or noncausally by the encoder. In the rest of the correspondence, we focus on the special case where the system employs a stationary quantizer. Using a rate distortion approach we bound the alphabet's size of the auxiliary random variable (RV) of the information capacity. Next, we turn to the additive white Gaussian noise (AWGN) channel with fading, and show that the determination of the capacity region reduces to finding the optimal genie strategies and the optimal power allocation distribution along the product alphabet of the auxiliary RV and the quantizer's output alphabets. The suggested model can be applied, for example, to an orthogonal frequency-division multiplexing (OFDM) communication system. Here the fading across frequencies comprises the channel state sequence. Coded fading information is provided to the channel encoder via a way-side, rate-limited channel. In addition, since coding operation is expensive, a simpler scheme provides the channel encoder with quantized fading information, e.g., whether each coefficient is above/below a threshold.
机译:我们考虑一个独立且分布均匀(即i.d.)的状态相关信道,在发送器(CSIT)具有部分(速率受限)信道状态信息(CSI),在接收器(CSIR)具有完整CSI。 CSIT包括两个部分,均受速率限制,并通过无噪声的路侧信道进行通信。第一部分是由第三方(精灵)提供的CSI编码,第二部分是状态的确定性标量量化器的输出。给出了信道容量的单字母表达式。如果CSIT仅包含编码部分,我们将表明先前在文献中建议的容量过于乐观,并建议将其作为信息容量的一部分进行更正。对于一般设置,提出了一种基于多个码本复用的最佳编码方案。事实证明,无论编码器是因果还是非因果地观察量化器的输出,通道的容量都是相同的。在其余的对应关系中,我们重点讨论系统采用固定量化器的特殊情况。使用比率失真方法,我们限制了信息容量的辅助随机变量(RV)的字母大小。接下来,我们转向具有衰落的加性高斯白噪声(AWGN)信道,并表明,对容量区域的确定减少了沿着辅助RV和量化器的乘积字母找到最优的精灵策略和最优的功率分配分布输出字母。所建议的模型可以例如应用于正交频分复用(OFDM)通信系统。这里,频率上的衰落包括信道状态序列。编码的衰落信息通过路边速率受限的信道提供给信道编码器。另外,由于编码操作是昂贵的,因此较简单的方案为信道编码器提供了量化的衰落信息,例如,每个系数是否在阈值之上/之下。

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