论文标题
启用关键MMTC:MMTC中的URLLC的审查
Towards Enabling Critical mMTC: A Review of URLLC within mMTC
论文作者
论文摘要
大规模的机器型通信(MMTC)和超级可靠和低延迟通信(URLLC)是第五代(5G)通信系统中的两种关键服务类型,分别以低延迟性追求可伸缩性和可靠性。设想这两种极端服务将与新兴的用例(例如,广阔的灾难监测,无线工厂自动化)共同结合在一起\ Emph {critical {critial {关键MMTC},为设计5G以上的无线系统带来了新的挑战。虽然传统的网络切片可有效支持MMTC和URLLC的简单混合物,但很难同时保证关键MMTC的可靠性,延迟和可伸缩性要求(例如,<4ms延迟,$ 10^6 $设备/km $^2 $用于工厂自动化的2美元)和有限的无线电资源。此外,最近提出了针对可扩展URLLC的解决方案(例如,机器学习帮助了无人驾驶汽车的URLLC)不适合关键MMTC,其机器类型用户具有最小的能量预算和计算能力,该功能应(紧密)针对给定的任务进行优化。为此,我们的论文旨在表征重要的MMTC的有前途的用例并搜索其可能的解决方案。为此,我们首先回顾了单独的MMTC和URLLC服务的最先进(SOTA)技术,然后从SOTA冲突的要求中确定关键的挑战,然后是潜在的潜在关键MMTC解决方案的潜在方法。
Massive machine-type communication (mMTC) and ultra-reliable and low-latency communication (URLLC) are two key service types in the fifth-generation (5G) communication systems, pursuing scalability and reliability with low-latency, respectively. These two extreme services are envisaged to agglomerate together into \emph{critical mMTC} shortly with emerging use cases (e.g., wide-area disaster monitoring, wireless factory automation), creating new challenges to designing wireless systems beyond 5G. While conventional network slicing is effective in supporting a simple mixture of mMTC and URLLC, it is difficult to simultaneously guarantee the reliability, latency, and scalability requirements of critical mMTC (e.g., < 4ms latency, $10^6$ devices/km$^2$ for factory automation) with limited radio resources. Furthermore, recently proposed solutions to scalable URLLC (e.g., machine learning aided URLLC for driverless vehicles) are ill-suited to critical mMTC whose machine type users have minimal energy budget and computing capability that should be (tightly) optimized for given tasks. To this end, our paper aims to characterize promising use cases of critical mMTC and search for their possible solutions. To this end, we first review the state-of-the-art (SOTA) technologies for separate mMTC and URLLC services and then identify key challenges from conflicting SOTA requirements, followed by potential approaches to prospective critical mMTC solutions at different layers.