Design and Performance of Resonant Beam Communications—Part I: Quasi-Static Scenario

IF 9.2 2区 计算机科学 Q1 COMPUTER SCIENCE, INFORMATION SYSTEMS IEEE Transactions on Mobile Computing Pub Date : 2024-09-11 DOI:10.1109/TMC.2024.3458415
Dongxu Li;Yuanming Tian;Chuan Huang;Qingwen Liu;Shengli Zhou
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Abstract

This two-part paper studies a point-to-point resonant beam communication (RBCom) system, where two separately deployed retroreflectors are adopted to generate the resonant beam between the transmitter and the receiver, and analyzes the transmission rate of the considered system under both the quasi-static and mobile scenarios. Part I of this paper focuses on the quasi-static scenario where the locations of the transmitter and the receiver are relatively fixed. Specifically, we propose a new information-bearing scheme which adopts a synchronization-based amplitude modulation method to mitigate the echo interference caused by the reflected resonant beam. With this scheme, we show that the quasi-static RBCom channel is equivalent to a Markov channel and can be further simplified as an amplitude-constrained additive white Gaussian noise channel. Moreover, we develop an algorithm that jointly employs the bisection and exhaustive search to maximize its capacity upper and lower bounds. Finally, numerical results validate our analysis. Part II of this paper discusses the performance of the RBCom system under the mobile scenario.
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共振波束通信的设计与性能--第一部分:准静态场景
本文研究了一种点对点谐振波束通信(RBCom)系统,该系统采用两个单独部署的后向反射器在发射机和接收机之间产生谐振波束,并分析了所考虑的系统在准静态和移动两种情况下的传输速率。本文的第一部分着重于准静态场景,其中发射机和接收机的位置相对固定。具体而言,我们提出了一种新的信息承载方案,该方案采用基于同步的调幅方法来减轻反射谐振光束引起的回波干扰。利用该方案,我们证明了准静态RBCom信道等价于马尔可夫信道,并且可以进一步简化为一个幅度受限的加性高斯白噪声信道。此外,我们还开发了一种算法,该算法结合了二分法和穷举搜索来最大化其容量上界和下界。最后,数值结果验证了我们的分析。第二部分讨论了RBCom系统在移动场景下的性能。
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来源期刊
IEEE Transactions on Mobile Computing
IEEE Transactions on Mobile Computing 工程技术-电信学
CiteScore
12.90
自引率
2.50%
发文量
403
审稿时长
6.6 months
期刊介绍: IEEE Transactions on Mobile Computing addresses key technical issues related to various aspects of mobile computing. This includes (a) architectures, (b) support services, (c) algorithm/protocol design and analysis, (d) mobile environments, (e) mobile communication systems, (f) applications, and (g) emerging technologies. Topics of interest span a wide range, covering aspects like mobile networks and hosts, mobility management, multimedia, operating system support, power management, online and mobile environments, security, scalability, reliability, and emerging technologies such as wearable computers, body area networks, and wireless sensor networks. The journal serves as a comprehensive platform for advancements in mobile computing research.
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