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Latency and Reliability Trade-Off With Computational Complexity Constraints: OS Decoders and Generalizations

机译:计算复杂性约束的延迟和可靠性折衷:OS解码器和概括

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In this article, we study the problem of latency and reliability trade-off in ultra-reliable low-latency communication (URLLC) in the presence of decoding complexity constraints. We consider linear block encoded codewords transmitted over a binary-input AWGN channel and decoded with order-statistic (OS) decoder. We first investigate the performance of OS decoders as a function of decoding complexity and propose an empirical model that accurately quantifies the corresponding trade-off. Next, a consistent way to compute the aggregate latency for complexity constrained receivers is presented, where the latency due to decoding is also included. It is shown that, with strict latency requirements, decoding latency cannot be neglected in complexity constrained receivers. Next, based on the proposed model, several optimization problems, relevant to the design of URLLC systems, are introduced and solved. It is shown that the decoding time has a drastic effect on the design of URLLC systems when constraints on decoding complexity are considered. Finally, it is also illustrated that the proposed model can closely describe the performance versus complexity trade-off for other candidate coding solutions for URLLC such as tail-biting convolutional codes, polar codes, and low-density parity-check codes.
机译:在本文中,我们在解码复杂性约束的情况下,研究了超可靠的低延迟通信(URLLC)的延迟和可靠性权衡问题。我们考虑通过二进制输入AWGN通道发送的线性块编码码字并用订单统计(OS)解码器解码。我们首先调查OS解码器的性能作为解码复杂性的函数,并提出了一种准确量化相应权衡的经验模型。接下来,呈现了一种计算复杂性受限接收器的聚合等待时间的一致方式,其中还包括解码引起的延迟。结果表明,具有严格的延迟要求,在复杂性受限接收器中不能忽略解码延迟。接下来,基于所提出的模型,介绍和解决了与Urllc系统设计相关的几个优化问题。结果表明,当考虑解码复杂性的限制时,解码时间对URIFS系统的设计具有剧烈影响。最后,还示出了所提出的模型可以密切描述用于URLLC的其他候选编码解决方案的性能与复杂性权衡,例如尾倾耦合代码,极码和低密度奇偶校验码。

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