In this paper, we consider the downlink broadcast channel under heterogenous blocklength constraints, where each user experiences different interference statistics across its received symbols. Different from the homogeneous blocklength case, the strong users with short blocklength transmitted symbol blocks usually cannot wait to receive the entire transmission frame and perform successive interference cancellation (SIC) owing to their stringent latency requirements. Even if SIC is feasible, it may not be perfect 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, i.e., without SIC. In addition, we derive the finite blocklength achievable rate and use it for guiding the design of channel coding and modulations. Both achievable rate and error probability simulation show that the proposed scheme can operate close to the benchmark scheme which assumes capacity-achieving signaling and perfect SIC.
翻译:在本文中,我们考虑下行链路广播频道在不均匀的轮廓限制下,每个用户在收到的符号中都经历不同的干扰统计数据。不同于单一的轮廓限制,拥有短轮廓传送符号块的强大用户通常不能等待收到整个传输框架并连续取消干扰(SIC),因为其严格的延迟要求。即使SIC是可行的,在有限的轮廓限制下,它也可能不完美。为了应对延缓性和可靠性要求方面的差异性,我们提出了一个实用的下行链路传输计划,配有离散信号和单一用户解码,即不使用SIC。此外,我们得出有限的轮廓可实现率,并用它来指导频道编码和调制的设计。可实现的速率和误差概率模拟都表明,拟议的计划可以接近假设能力化信号和完全的SIC基准计划。