论文标题
非均质网络的关节相干和非连贯检测和解码技术
Joint Coherent and Non-Coherent Detection and Decoding Techniques for Heterogeneous Networks
论文作者
论文摘要
传统上专为人类通信(HTC)设计的蜂窝网络有可能提供与机器型通信(MTC)的具有成本效益的连通性。但是,MTC的特征是蜂窝网络中前所未有的流量,因此对其成功融合构成了挑战。在这项工作中,我们提出了一个统一的MTC和HTC共存的统一框架。我们考虑了一个异质网络,在该网络中,机器型设备与增强的移动宽带(EMBB)设备共存,并提出收发器技术,从而促进这些设备有效恢复的有效信号。为此,我们提出了EMBB Pilot和MTC数据生成策略,该策略促进了EMBB数据的连贯解码和MTC数据的非固定解码。此外,我们使用接收器操作特性,中断概率和归一化均方根误差(NMSE)评估共存的可行性。我们的数值结果表明,可以通过适当配置的平均信噪比和试点长度来实现异质服务的和谐共存。
Cellular networks that are traditionally designed for human-type communication (HTC) have the potential to provide cost effective connectivity to machine-type communication (MTC). However, MTC is characterized by unprecedented traffic in cellular networks, thus posing a challenge to its successful incorporation. In this work, we propose a unified framework for amicable coexistence of MTC and HTC. We consider a heterogeneous network where machine-type devices coexist with enhanced mobile broadband (eMBB) devices and propose transceiver techniques that promote efficient signal recovery from these devices. For this, we present an eMBB pilot and MTC data generation strategy that facilitates joint coherent decoding of eMBB data and non-coherent decoding of MTC data. Furthermore, we assess the feasibility of coexistence using receiver operating characteristics, outage probability, and normalized mean square error (NMSE). Our numerical results reveal that a harmonious coexistence of the heterogeneous services can be achieved with properly configured average signal-to-noise ratios and pilot length.