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In-Band Pilot Overhead in Ultra-Reliable Low Latency Decode and Forward Relaying

机译:在超可靠的低延迟解码和前向中继中的带内导频开销

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In URLLC the performance of short message communications highly depends on the training sequence length due to the stringent latency and reliability requirements. In this paper, we study the performance of cooperative and non-cooperative transmissions under imperfect channel estimation and Rayleigh fading for URLLC. We assume a peak power constraint on pilot symbols in addition to the average power constraint which is used for comparison purposes. We obtain the optimal training length as a function of blocklength and power constraint factor to meet the URLLC requirements. Moreover, the simulation results show the impact of pilot overhead on reliability, latency, and goodput of cooperative communications compared to point-to-point transmission.
机译:在URLLC中,由于严格的延迟和可靠性要求,短信通信的性能高度取决于训练序列长度。在本文中,我们研究了在Urllc的不完美信道估计和瑞利衰落下的合作和非协作传输的性能。除了用于比较目的的平均功率约束之外,我们假设在导频符号上的峰值功率约束。我们获得最佳训练长度,作为块长度和功率约束因素的函数,以满足URIP的要求。此外,模拟结果显示了导频开销对协作通信的可靠性,延迟和贵单的影响,而与点对点传输相比。

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