首页> 外文会议>2011 IEEE International Symposium on Information Theory Proceedings >Multiple access channel with states known noncausally at one encoder and only strictly causally at the other encoder
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Multiple access channel with states known noncausally at one encoder and only strictly causally at the other encoder

机译:在一个编码器上无因果地知道状态,而在另一编码器上仅因果因果知道状态的多址通道

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We consider a two-user state-dependent multiaccess channel in which the states of the channel are known non-causally to one of the encoders and only strictly causally to the other encoder. Both encoders transmit a common message and, in addition, the encoder that knows the states non-causally transmits an individual message. We study the capacity region of this communication model. In the discrete memoryless case, we establish inner and outer bounds on the capacity region. Although the encoder that sends both messages knows the states fully, we show that the strictly causal knowledge of these states at the other encoder can be beneficial for this encoder, and in general enlarges the capacity region. Furthermore, we find an explicit characterization of the capacity in the case in which the two encoders transmit only the common message. In the Gaussian case, we characterize the capacity region for the model with individual message as well. Our converse proof in this case shows that, for this model, strictly causal knowledge of the state at one of the encoders does not increase capacity if the other is informed non-causally, a result which sheds more light on the utility of conveying a compressed version of the state to the decoder in recent results by Lapidoth and Steinberg on a multiacess model with only strictly causal state at both encoders and independent messages.
机译:我们考虑一个两用户状态相关的多路访问信道,其中该信道的状态对于一个编码器来说是非因果的,而对于另一个编码器来说则仅是因果关系。两种编码器都发送一条公共消息,此外,知道状态的编码器会无条件地发送一条单独的消息。我们研究了这种交流模型的能力区域。在离散的无记忆情况下,我们在容量区域上建立内部和外部边界。尽管发送这两个消息的编码器完全了解状态,但我们证明在另一个编码器上对这些状态的严格因果知识可能对该编码器有益,并且通常会扩大容量区域。此外,在两个编码器仅发送公共消息的情况下,我们发现了容量的明确表征。在高斯情况下,我们还用单个消息来描述模型的容量区域。在这种情况下,我们的反证明表明,对于该模型,如果其中一个编码器的状态没有被严格告知,则严格地对其中一个编码器的状态进行因果了解不会增加容量,这一结果使人们更加了解传送压缩文件的实用性。 Lapidoth和Steinberg在多访问模型上的最新结果中给出了解码器的状态版本,在编码器和独立消息上都只有严格的因果状态。

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