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The outage performance of realtime transmission in multiple asynchronous relays enhanced OFDM system

机译:多个异步中继增强型OFDM系统中实时传输的中断性能

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This paper1 considers the outage performance of multiple relays transmission in Orthogonal Frequency Division Multiplexing (OFDM) systems. Relaying has been suggested in general to improve the reliability of wireless systems significantly and is therefore a candidate for wireless industrial communication systems that need to meet tough latency and outage requirements. Different from previous works, this paper takes synchronization mismatch of hardware processing time at multiple relays into account and characterizes the performance impact of such asynchronous relays on the reliability of the system. We focus especially on the case where the transceivers do not have instantaneous channel state information but still need to fullfill tough reliability and latency constraints. We find that with respect to this scenario the synchronization mismatch can lead to a significant loss of reliability even if the individual mismatch of relays is relatively small compared to the cyclic prefix of the OFDM symbol. Consequently, this paper devises countermeasures to efficiently combat the synchronization issues either by introducing a longer cyclic prefix or by decreasing/adjusting the number of active relays. We find that all proposed countermeasures have their application domains which are determined by the average SNR and the severity of synchronization errors.
机译:本文 1 考虑了正交频分复用(OFDM)系统中多中继传输的中断性能。一般而言,已经提出了中继来显着提高无线系统的可靠性,因此,中继是需要满足苛刻的等待时间和中断要求的无线工业通信系统的候选者。与以前的工作不同,本文考虑了多个继电器的硬件处理时间的同步失配,并描述了这种异步继电器对系统可靠性的性能影响。我们特别关注收发器没有即时信道状态信息,但仍需要满足严格的可靠性和等待时间约束的情况。我们发现,相对于这种情况,即使中继器的个别失配与OFDM符号的循环前缀相比相对较小,同步失配也可能导致可靠性的重大损失。因此,本文提出了一些对策,可以通过引入更长的循环前缀或通过减少/调整活动继电器的数量来有效地解决同步问题。我们发现,所有提出的对策都有其应用领域,这些领域由平均SNR和同步错误的严重性确定。

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