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Receiver Designs for Low-Latency HF Communications

机译:低延迟HF通信的接收器设计

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High frequency (HF) radio communications offer latency advantages over fiber-optics in certain long-distance communication applications. As a result, there is interest in using HF for high-frequency trading (HFT), to make trans-continental market decisions that leverage the lower latency path of HF channels. The HF skywave channel is a dynamic medium and is one of the most challenging communication channels. Latencies in existing HF modems from coding and interleaving over several packets are prohibitive for HFT, which motivates the development of receivers that provide good performance given a delay constraint. In this paper, we present receiver designs that can be employed for low-latency reliable communication. We introduce a multitrellis adaptive Viterbi algorithm (MAVA) for sparse and time-varying intersymbol interference (ISI) channels, where the conventional Viterbi algorithm would lead to a large trellis. While multitrellis receiver designs have previously been considered, MAVA also incorporates real-time channel tracking, which is necessary for a practical HF receiver. We combine the MAVA algorithm with maximum a posteriori (MAP) detection to obtain a hybrid receiver with high-fidelity, low-delay performance. Finally, we conduct an asymptotic efficiency analysis of the hybrid receiver to gain insight into how deferring decisions improves performance in the high signal-to-noise ratio (SNR) regime.
机译:高频(HF)无线电通信在某些长距离通信应用中提供潜伏在光纤上的延迟优势。因此,有兴趣使用HF进行高频交易(HFT),以制定利用HF通道的较低延迟路径的跨大陆市场决策。 HF Skywave频道是一种动态介质,是最具挑战性的通信渠道之一。来自多个数据包的编码和交织的现有HF调制解调器的延迟对于HFT来说是禁止的,这激励了提供给出延迟约束的良好性能的接收器的开发。在本文中,我们提供了可用于低延迟可靠通信的接收器设计。我们介绍了一种多纤巧的自适应维特比算法(Mava),用于稀疏和时变的iteSymbol干扰(ISI)通道,其中传统的维特比算法将导致大型格子。虽然先前已经考虑了多蚁饼接收器设计,但Mava还包括实时通道跟踪,这对于实际的HF接收器是必要的。我们将Mava算法与最大后验(MAP)检测相结合,以获得具有高保真度,低延迟性能的混合接收器。最后,我们对混合接收器进行了渐近效率分析,深入了解推迟决策如何提高高信噪比(SNR)制度的性能。

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