The problem of designing downlink transmission schemes for supporting heterogeneous ultra-reliable low-latency communications (URLLC) and/or with other types of services is investigated. We consider the broadcast channel, where the base station sends superimposed signals to multiple users. Under heterogeneous blocklength constraints, strong users who are URLLC users cannot wait to receive the entire transmission frame and perform successive interference cancellation (SIC) due to stringent latency requirements, in contrast to the conventional infinite blocklength cases. Even if SIC is feasible, SIC may be imperfect under finite blocklength constraints. To cope with the heterogeneity in latency and reliability requirements, we propose a practical downlink transmission scheme with discrete signaling and single-user decoding (SUD), i.e., without SIC. We carefully design the discrete input distributions to enable efficient SUD by exploiting the structural interference. Furthermore, we derive the second-order achievable rate under heterogenous blocklength and error probability constraints and use it to guide the design of channel coding and modulations. It is shown that in terms of achievable rate under short blocklength, the proposed scheme with regular quadrature amplitude modulations and SUD can operate extremely close to the benchmark schemes that assume perfect SIC with Gaussian signaling.
翻译:我们研究了设计下链传输计划以支持各种超可变性低长通信(URLLC)和(或)与其他类型服务相配套的问题。我们考虑的是广播频道的问题。我们考虑的是广播频道,基础站向多个用户发送超额发送信号。在各种不同的轮廓限制下,作为URLLC用户的强大用户不能等待接收整个传输框架,并连续取消干扰(SIC),因为与传统的宽长轮廓要求相反,严格的拉长要求是严格的。即使SIC是可行的,在有限的轮廓限制下,SIC也可能不完善。为了应对耐久性和可靠性要求方面的异质性,我们建议采用一个实用的下链传输计划,在离散信号信号信号信号和单一用户解码(SUD)中,即没有SIC系统。我们仔细设计离子输入分配,以便通过利用结构干扰实现高效的SUD。此外,我们用高频长和误差概率限制来计算第二序列可实现的速率,并用它来指导频道编码和调制的设计。我们从可实现的可实现的低频度信号速度率率率的角度显示,在最接近的SISIS标准下运行正常的SISDRA标准。