基于战术数据链路的集成军事物联网 (IoMT) 的超高可靠性和海量连接能力

IF 5 Q1 ENGINEERING, MULTIDISCIPLINARY
Li Bing , Yating Gu , Lanke Hu , Li Bowen , Yang Lihua , Jue Wang , Yue Yin
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引用次数: 0

摘要

军事物联网(IoMT)面临的主要挑战之一是在提供超高可靠性的服务质量(QoS)保证的同时,实现大规模连接。为此,本文提出了一类码域非正交多址接入(NOMAs),用于基于战术数据链路(如 Link-16 和联合战术信息分发系统(JTIDS))的大规模 IoMT 的上行超可靠联网。在所考虑的场景中,一颗配备 Nr 个天线的卫星为 K 个设备(包括车辆、无人机、船舶、传感器、手机无线电等)提供服务器。非正交编码调制是多输入多输出(MIMO)-NOMA 的一种特殊形式。讨论从评估接收器滤波器的输出信号干扰加噪声(SINR)开始,揭示了当用户数量明显大于所接纳的设备数量时系统过载的闭式表达式,从而实现大规模连接。由于该表达式等同于定点编程,因此可以基于功率分配和相位整形技术开发出简单而成功的干扰抑制方法,从而最大限度地提高总和率。提议的设计以非线性调制方案为例,如最小移位键控 (MSK) 和高斯 MSK (GMSK),这是 Link-16 和 JITDS 等 IoMT 标准中的两种关键调制格式。数值结果表明,它们具有接近容量的性能。幸运的是,与现有方案相比,这种性能是通过使用编码率更高的简单前向纠错(FEC)获得的,同时发射功率降低了 6 dB。所提出的设计不仅可广泛应用于 IoMT,还可用于深空通信,因为在深空通信中,超高可靠性和大规模连接是一个非常重要的问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultra reliability and massive connectivity provision in integrated internet of military things (IoMT) based on tactical datalink

One of the major challenges arising in internet of military things (IoMT) is accommodating massive connectivity while providing guaranteed quality of service (QoS) in terms of ultra-high reliability. In this regard, this paper presents a class of code-domain nonorthogonal multiple accesses (NOMAs) for uplink ultra reliable networking of massive IoMT based on tactical datalink such as Link-16 and joint tactical information distribution system (JTIDS). In the considered scenario, a satellite equipped with Nr antennas servers K devices including vehicles, drones, ships, sensors, handset radios, etc. Nonorthogonal coded modulation, a special form of multiple input multiple output (MIMO)-NOMA is proposed. The discussion starts with evaluating the output signal to interference-plus-noise (SINR) of receiver filter, leading to the unveiling of a closed-form expression for overloading systems as the number of users is significantly larger than the number of devices admitted such that massive connectivity is rendered. The expression allows for the development of simple yet successful interference suppression based on power allocation and phase shaping techniques that maximizes the sum rate since it is equivalent to fixed-point programming as can be proved. The proposed design is exemplified by nonlinear modulation schemes such as minimum shift keying (MSK) and Gaussian MSK (GMSK), two pivotal modulation formats in IoMT standards such as Link-16 and JITDS. Numerical results show that near capacity performance is offered. Fortunately, the performance is obtained using simple forward error corrections (FECs) of higher coding rate than existing schemes do, while the transmit power is reduced by 6 dB. The proposed design finds wide applications not only in IoMT but also in deep space communications, where ultra reliability and massive connectivity is a keen concern.

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来源期刊
Defence Technology(防务技术)
Defence Technology(防务技术) Mechanical Engineering, Control and Systems Engineering, Industrial and Manufacturing Engineering
CiteScore
8.70
自引率
0.00%
发文量
728
审稿时长
25 days
期刊介绍: Defence Technology, a peer reviewed journal, is published monthly and aims to become the best international academic exchange platform for the research related to defence technology. It publishes original research papers having direct bearing on defence, with a balanced coverage on analytical, experimental, numerical simulation and applied investigations. It covers various disciplines of science, technology and engineering.
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