On the capacity of the symbol-asynchronous relay channel

Chiranjib Choudhuri, U. Mitra
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引用次数: 6

Abstract

The capacity of the symbol-asynchronous single-relay channel is investigated. Symbol asynchronism implies that the codewords transmitted from the relay and the source do not coincide in time at the destination. Due to propagation or implementation effects (e.g. mis-synchronized clocks), symbol asynchronism occurs in many practical situations. In ad hoc scenarios, such as sensor networks, achieving perfect synchronism is challenging (due to the distributed nature of the network). Herein it is shown that the symbol-asynchronous single-relay channel can be modeled as a MIMO relay channel with memory. First, lower and upper bounds on the capacity are derived under the assumption that the receivers know the symbol epochs and the transmitters know their mutual offset. Next, the case where the transmitters only know that the mutual offsets that parameterize the channel belong to an uncertainty set and receivers have no knowledge of the symbol epochs is examined. Conditions for characterizing capacity (when the upper and lower bounds match) are also derived. Simple asynchronous coding schemes for the relay channel are also explored. The proposed coding scheme can be extended to the relay with memory. Bilayer LDPC codes are used to replicate the binning strategy of the relay and MLC coding with MSD decoding is used to counter the effect of memory.
符号异步中继信道容量的研究
研究了符号异步单中继信道的容量。符号异步意味着从中继和源发送的码字在目的地不及时一致。由于传播或实现的影响(例如时钟不同步),符号异步在许多实际情况下都会发生。在特定场景中,例如传感器网络,实现完美的同步是具有挑战性的(由于网络的分布式特性)。本文表明,符号异步单中继通道可以建模为具有存储器的MIMO中继通道。首先,在假设接收机知道符号周期,发射机知道它们的相互偏移量的情况下,推导了容量的下界和上界。接下来,研究了发射机只知道参数化信道的相互偏移属于不确定集而接收机不知道符号周期的情况。还推导了表征容量的条件(当上界和下界匹配时)。本文还探讨了中继信道的简单异步编码方案。所提出的编码方案可扩展到具有存储器的继电器。采用双层LDPC码来复制中继的分组策略,采用MLC编码和MSD解码来抵消存储器的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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