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Multiple access channels with states causally known at transmitters

机译:在发射机上因果关系知道状态的多个访问信道

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摘要

It has been recently shown by Lapidoth and Steinberg that strictly causal state information can be beneficial in multiple access channels (MACs). Specifically, it was proved that the capacity region of a two-user MAC with independent states, each known strictly causally to one encoder, can be enlarged by letting the encoders send compressed past state information to the decoder. In this study, a generalization of the said strategy is proposed whereby the encoders compress also the past transmitted codewords along with the past state sequences. The proposed scheme uses a combination of long-message encoding, compression of the past state sequences and codewords without binning, and joint decoding over all transmission blocks. The proposed strategy has been recently shown by Lapidoth and Steinberg to strictly improve upon the original one. Capacity results are then derived for a class of channels that include two-user modulo-additive state-dependent MACs. Moreover, the proposed scheme is extended to state-dependent MACs with an arbitrary number of users. Finally, output feedback is introduced and an example is provided to illustrate the interplay between feedback and availability of strictly causal state information in enlarging the capacity region.
机译:Lapidoth和Steinberg最近表明,严格的因果状态信息在多访问通道(MAC)中可能是有益的。具体地说,已证明,通过让编码器将压缩的过去状态信息发送到解码器,可以扩大具有独立状态的两用户MAC的容量区域,每个状态对于一个编码器都是严格因果已知的。在这项研究中,提出了所述策略的一般化,由此编码器还压缩了过去发送的码字以及过去的状态序列。提出的方案结合了长消息编码,过去状态序列和码字的压缩而无需合并,以及在所有传输块上的联合解码。 Lapidoth和Steinberg最近证明了拟议的策略可以对原始策略进行严格改进。然后,针对包含两用户模加性状态相关MAC的一类信道得出容量结果。而且,将所提出的方案扩展到具有任意数量的用户的状态相关的MAC。最后,介绍了输出反馈,并提供了一个示例来说明在扩大容量区域时,反馈与严格因果状态信息的可用性之间的相互作用。

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