论文标题
具有滑动窗口网络编码
Ultra-Reliable Low-Latency Millimeter-Wave Communications with Sliding Window Network Coding
论文作者
论文摘要
超可易度和低延迟是新的第六代通信系统(XURLLC)的关键要求。在过去的几年中,为了增加吞吐量,在高级无线通信中引入了自适应活性天线,特别是在毫米波(MMWave)的域中。因此,提出了新的低层技术来应对高维和可电子旋转梁的实际挑战。从Omni方向到高方向天线的过渡提出了一种新型的无线系统,可提供高带宽,但易受高损失和高潜伏期变化的影响。经典方法无法缩小这些高级系统中高吞吐量和低延迟之间的上升差距。在这项工作中,我们将有效的滑动窗口网络编码解决方案合并到MMWave Communications中。尽管诸如无额定代码之类的遗产系统会改善延迟,但跨层结果表明,由于MMWave通道和低层重传机制的有损行为,它们不提供低潜伏期通信(LLC-低于10 ms)。另一方面,固定的滑动窗口随机线性网络编码(RLNC)能够实现LLC,甚至更好,自适应滑动窗口RLNC获得了超可靠性LLC(超级支持和低延迟通信(URLLC)-LLC,最大延迟低于10毫秒,成功率超过99%)。
Ultra-reliability and low-latency are pivotal requirements of the new 6th generation of communication systems (xURLLC). Over the past years, to increase throughput, adaptive active antennas were introduced in advanced wireless communications, specifically in the domain of millimeter-wave (mmWave). Consequently, new lower-layer techniques were proposed to cope with practical challenges of high dimensional and electronically-steerable beams. The transition from omni-directional to highly directional antennas presents a new type of wireless systems that deliver high bandwidth, but that are susceptible to high losses and high latency variation. Classical approaches cannot close the rising gap between high throughput and low delay in those advanced systems. In this work, we incorporate effective sliding window network coding solutions in mmWave communications. While legacy systems such as rateless codes improve delay, cross-layer results show that they do not provide low latency communications (LLC - below 10 ms), due to the lossy behaviour of mmWave channel and the lower-layers' retransmission mechanisms. On the other hand, fixed sliding window random linear network coding (RLNC) is able to achieve LLC, and even better, adaptive sliding window RLNC obtains ultra-reliable LLC (Ultra-Reliable and Low-Latency Communications (URLLC) - LLC with maximum delay below 10 ms with more than 99% success rate).