论文标题

完整的线性网络编码在全双工中继网络中的完成延迟

Completion Delay of Random Linear Network Coding in Full-Duplex Relay Networks

论文作者

Su, Rina, Sun, Qifu Tyler, Zhang, Zhongshan, Li, Zongpeng

论文摘要

随着下一代无线网络蓬勃发展,全双工和继电器技术被合并以提高网络性能。随机线性网络编码(RLNC)是另一种流行技术,可提高无线通信的效率和可靠性。在本文中,为了探索RLNC在全双工中继网络中的潜力,我们研究了两个基本的完美RLNC方案,并理论上分析了它们的完成延迟性能。第一个方案是在无线广播中研究的常规Perfect RLNC的直接应用,因此它在继电器上不涉及其他过程。它的性能是所有完美RLNC方案的上限。另一个方案允许在继电器处足够大的缓冲区和无约束的线性编码。它达到了最佳性能,并作为所有RLNC方案的下限。对于这两种方案,都会得出封闭式公式以表征单个接收器的预期完成延迟以及整个系统的预期完成延迟。还证明了数值结果可以验证理论特征,并将两个基本方案与现有方案进行比较。

As the next-generation wireless networks thrive, full-duplex and relay techniques are combined to improve the network performance. Random linear network coding (RLNC) is another popular technique to enhance the efficiency and reliability of wireless communications. In this paper, in order to explore the potential of RLNC in full-duplex relay networks, we investigate two fundamental perfect RLNC schemes and theoretically analyze their completion delay performance. The first scheme is a straightforward application of conventional perfect RLNC studied in wireless broadcast, so it involves no additional process at the relay. Its performance serves as an upper bound for all perfect RLNC schemes. The other scheme allows sufficiently large buffer and unconstrained linear coding at the relay. It attains the optimal performance and serves as a lower bound for all RLNC schemes. For both schemes, closed-form formulae to characterize the expected completion delay at a single receiver as well as for the whole system are derived. Numerical results are also demonstrated to validate the theoretical characterizations, and compare the two fundamental schemes with the existing one.

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