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Joint Uplink and Downlink Transmission Design for URLLC Using Finite Blocklength Codes

机译:使用有限块长码的URLLC的联合上行链路和下行链路传输设计

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This paper considers a joint uplink (UL) and downlink (DL) transmission design problem for achieving ultra-reliable and low-latency communications (URLLC) in a two-hop wireless network. Specifically, we assume that a sensor node sends information signals to a base station (BS) and then the BS sends some processed signals to some mobile terminals (MTs). The objective is to minimize the total over-the-air transmission latency under stringent UL-DL reliability constraints and power limit. The achievable rate formula of finite blocklength codes is used to explicitly model the relation between the transmission rate, latency and reliability. While the formulated problem is difficult to solve, we explore the problem structure by analyzing monotonicity and convexity of the objective function with respect to system variables. Then we develop an efficient alternating optimization (AO) algorithm to solve the considered problem. Simulation results demonstrate interesting trade off between various system parameters and show that the proposed AO algorithm yields near-optimal solutions.
机译:本文考虑了一个联合上行链路(UL)和下行链路(DL)传输设计问题,用于在两跳无线网络中实现超可靠和低延迟通信(URLLC)。具体地,我们假设传感器节点将信息信号发送到基站(BS),然后BS向一些移动终端(MT)发送一些处理信号。目的是在严格的UL-DL可靠性约束和功率限制下最小化全面过空中传输延迟。可实现的有限块长度代码的可实现速率公式用于显式模拟传输速率,延迟和可靠性之间的关系。虽然制定的问题很难解决,但我们通过分析对系统变量的单调性和凸性来探讨问题结构。然后我们开发一个有效的交替优化(AO)算法来解决所考虑的问题。仿真结果展示了各种系统参数之间有趣的折衷,并表明所提出的AO算法产生近最佳解决方案。

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