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Distributed Space-Time Coding for Full-Duplex Asynchronous Cooperative Communications

机译:全双工异步协作通信的分布式时空编码

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摘要

In this paper, we propose two distributed linear convolutional space-time coding (DLC-STC) schemes for full-duplex (FD) asynchronous cooperative communications. The DLC-STC Scheme 1 is for the case of the complete loop channel cancellation, which achieves the full asynchronous cooperative diversity. The DLC-STC Scheme 2 is for the case of the partial loop channel cancellation and amplifying, where some loop signals are used as the self-coding instead of treated as interference to be directly cancelled. We show this scheme can achieve full asynchronous cooperative diversity. We then evaluate the performance of the two schemes when loop channel information is not accurate and present an amplifying factor control method for the DLC-STC Scheme 2 to improve its performance with inaccurate loop channel information. Simulation results show that the DLC-STC Scheme 1 outperforms the DLC-STC Scheme 2 and the delay diversity scheme if perfect or high quality loop channel information is available at the relay, while the DLC-STC Scheme 2 achieves better performance if the loop channel information is imperfect.
机译:在本文中,我们提出了两种用于全双工(FD)异步协作通信的分布式线性卷积空时编码(DLC-STC)方案。 DLC-STC方案1适用于完全环路信道消除的情况,可实现完全异步协作分集。 DLC-STC方案2是用于部分环路信道消除和放大的情况,其中一些环路信号被用作自编码而不是被视为直接消除的干扰。我们展示了该方案可以实现完全异步协作分集。然后,我们在环路信道信息不准确时评估这两种方案的性能,并提出了一种DLC-STC方案2的放大因子控制方法,以利用不准确的环路信道信息来提高其性能。仿真结果表明,如果在中继器上可获得完美或高质量的环路信道信息,则DLC-STC方案1优于DLC-STC方案2和延迟分集方案,而如果环路信道可用,则DLC-STC方案2的性能会更好信息不完善。

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