基于可见光通信的物联网系统的多频带无载波幅度和相位调制中的载波同步

IF 2.3 4区 计算机科学 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC Iet Optoelectronics Pub Date : 2023-06-02 DOI:10.1049/ote2.12095
Luís Rodrigues, Mónica Figueiredo, Luís Nero Alves, Zabih Ghassemlooy
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引用次数: 0

摘要

基于中央数字多频带无载波幅度和相位发射机,评估了开发物联网多用户通信系统的技术可行性,该发射机在多个信道上为许多低成本/低功率设备广播数据。它解决了载波同步问题,由于设备的缺陷和系统的延迟,载波同步在现实世界的实现中至关重要。提出了传统Costas回路的仿真模型,以及性能结果,证明了系统与牵引和锁定范围同步的能力� 800和� 900Hz。环路需要1.194ms才能处于锁定状态,允许系统在6个符号周期内锁定。此外,作者还测量了系统在存在其他调制频带的噪声和干扰的情况下的性能。结果表明,噪声和干扰并没有降低系统的性能。尽管当能量存在于相邻频带时,系统无法锁定,但高阶锁相环、混合频分多址和时分多址等替代方案可以在不显著增加设备成本和复杂性的情况下提高系统性能。
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Carrier synchronisation in multiband carrierless amplitude and phase modulation for visible light communication-based IoT systems

The technical feasibility of developing an Internet of Things multi-user communication system is evaluated based on a central digital multiband carrierless amplitude and phase transmitter, which broadcasts data on multiple channels for a number of low-cost/low-power devices. It addresses the issue of carrier synchronisation, which is critical in real-world implementations because of imperfections of devices and the delays of the system. A simulation model for the traditional Costas Loop is presented, along with performance results, which demonstrate the system's ability to synchronise with pull-in and lock ranges of ±800 and ±900 Hz, respectively. The loop requires 1.194 ms to be in the locked state, allowing the system to lock within 6 symbols period. In addition, the authors measured the performance of the system in the presence of noise and interference from other modulated bands. The results showed that noise and interference did not degrade the system's performance. Although the system was unable to lock when energy was present in adjacent bands, alternative options such as a high order phase-locked loop and hybrid frequency-division multiple access and time-division multiple access, can improve system performance without significantly increasing the cost and complexity of the devices.

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来源期刊
Iet Optoelectronics
Iet Optoelectronics 工程技术-电信学
CiteScore
4.50
自引率
0.00%
发文量
26
审稿时长
6 months
期刊介绍: IET Optoelectronics publishes state of the art research papers in the field of optoelectronics and photonics. The topics that are covered by the journal include optical and optoelectronic materials, nanophotonics, metamaterials and photonic crystals, light sources (e.g. LEDs, lasers and devices for lighting), optical modulation and multiplexing, optical fibres, cables and connectors, optical amplifiers, photodetectors and optical receivers, photonic integrated circuits, photonic systems, optical signal processing and holography and displays. Most of the papers published describe original research from universities and industrial and government laboratories. However correspondence suggesting review papers and tutorials is welcomed, as are suggestions for special issues. IET Optoelectronics covers but is not limited to the following topics: Optical and optoelectronic materials Light sources, including LEDs, lasers and devices for lighting Optical modulation and multiplexing Optical fibres, cables and connectors Optical amplifiers Photodetectors and optical receivers Photonic integrated circuits Nanophotonics and photonic crystals Optical signal processing Holography Displays
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