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首页> 外文期刊>Wireless Communications, IEEE Transactions on >A Delay-Tolerant Asynchronous Two-Way-Relay System over Doubly-Selective Fading Channels
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A Delay-Tolerant Asynchronous Two-Way-Relay System over Doubly-Selective Fading Channels

机译:双选择性衰落信道上的时延容忍异步双向中继系统

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摘要

We consider design of asynchronous orthogonal frequency division multiplexing (OFDM) based diamond two-way-relay (DTWR) systems in a time-varying frequency-selective (doubly-selective) fading channel. In a DTWR system, two users exchange their messages with the help of two relays. Most of the existing works on asynchronous DTWR systems assume only small relative propagation delays between the received signals at each node that do not exceed the length of the cyclic-prefix (CP). However, in certain practical communication systems, significant differences in delays may take place, and hence existing solutions requiring excessively long CPs may be highly inefficient. In this paper, we propose a delay-independent CP insertion mechanism in which the CP length depends only on the number of subcarriers and the maximum delay spread of the corresponding channels. We also propose a symbol detection algorithm that is able to tolerate very long relative delays, that even exceed the length of the OFDM block itself, without a large increase in complexity. The proposed system is shown to significantly outperform other alternatives in the literature through a number of specific examples.
机译:我们考虑在时变频率选择性(双选择性)衰落信道中基于异步正交频分复用(OFDM)的钻石双路中继(DTWR)系统的设计。在DTWR系统中,两个用户在两个中继的帮助下交换消息。异步DTWR系统上的大多数现有工作都假设每个节点上接收信号之间的相对传播延迟很小,且不超过循环前缀(CP)的长度。但是,在某些实际的通信系统中,可能会发生时延的显着差异,因此,需要过长CP的现有解决方案可能效率很低。在本文中,我们提出了一种与延迟无关的CP插入机制,其中CP长度仅取决于子载波的数量和相应通道的最大延迟扩展。我们还提出了一种符号检测算法,该算法能够忍受非常长的相对延迟,甚至可以超过OFDM块本身的长度,而不会大幅增加复杂性。通过大量的具体例子,表明所提出的系统明显优于文献中的其他替代方案。

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