Design of Medium Voltage Power Line Spread Spectrum Carrier Communication System Based on Embedded System

Author(s):  
Hui Xiao ◽  
Xuebin Wu
2020 ◽  
Vol 17 (1) ◽  
pp. 151-162 ◽  
Author(s):  
Yingxue Li ◽  
Min Zhang ◽  
Wenguang Zhu ◽  
Mengyuan Cheng ◽  
Cheng Zhou ◽  
...  

Energies ◽  
2020 ◽  
Vol 13 (18) ◽  
pp. 4763
Author(s):  
Grzegorz Debita ◽  
Przemysław Falkowski-Gilski ◽  
Marcin Habrych ◽  
Grzegorz Wiśniewski ◽  
Bogdan Miedziński ◽  
...  

Application of a high-efficiency voice communication systems based on broadband over power line-power line communication (BPL-PLC) technology in medium voltage networks, including hazardous areas (like the oil and mining industry), as a redundant mean of wired communication (apart from traditional fiber optics and electrical wires) can be beneficial. Due to the possibility of utilizing existing electrical infrastructure, it can significantly reduce deployment costs. Additionally, it can be applied under difficult conditions, thanks to battery-powered devices. During an emergency situation (e.g., after coal dust explosion), the medium voltage cables are resistant to mechanical damage, providing a potentially life-saving communication link between the supervisor, rescue team, paramedics, and the trapped personnel. The assessment of such a system requires a comprehensive and accurate examination, including a number of factors. Therefore, various models were tested, considering: different transmission paths and types of coupling (inductive and capacitive), as well as various lengths of transmitted data packets. Next, a subjective quality evaluation study was carried out, considering speech signals from a number of languages (English, German, and Polish). Based on the obtained results, including both simulations and measurements, appropriate practical conclusions were formulated. Results confirmed the applicability of BPL-PLC technology as an efficient voice communication system for the oil and mining industry.


Frequenz ◽  
2021 ◽  
Vol 0 (0) ◽  
Author(s):  
Yuzhe Zhou

Abstract With the rapid development of broadband carrier communication technology, the power line communication market is growing. However, the frequency band of power line communication overlaps with other radio services, mainly the High Frequency (HF) radio services. In addition, power line communication may have electromagnetic leakage in the open air. Large-scale power line communication system will give a much greater interference to some critical HF radio services. In this paper, the standards and researches relative to the power line communication system are reviewed. Based on existing studies, impact analysis which includes the impact probability and severity of the power line communication system on HF equipment is proposed. In addition, explicit explanations are provided. The proposed impact analysis methods are applied to simulations and evaluations. Numerical results demonstrate that a large-scale power line communication system will cause additional ambient noise, which affects the performance and reliability of HF equipment with a high probability.


2012 ◽  
Vol 562-564 ◽  
pp. 1678-1681
Author(s):  
Yan Zhang

The paper introduces the project component of power carrier communication mode and communication system based on the spread spectrum communication theory. The methods of data transmission and spread spectrum technology applying in the coal mine communication systems are given. Paper analyzes the characteristics of signal and the feasibility of technique solutions for mine communications. The design possesses the strong practicability and operability.


2014 ◽  
Vol 971-973 ◽  
pp. 1688-1691 ◽  
Author(s):  
Guo Sheng Li

This paper analyzes the characteristics of a high-frequency signal transmission power lines ; focused on the spread spectrum communication technology in power line carrier communication ; -depth study of the spread spectrum modulation and demodulation techniques in communication technology-based , high-performance power line carrier dedicated MODEM chip SSC P300 internal works. Focuses on the design of the concentrator hardware systems.


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