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Study of the most important factors affecting on efficiency of power line communication systems
Other Title(s)
دراسة أهم العوامل التي تؤثر على كفاءة أنظمة الاتصالات عبر خطوط الكهرباء
Joint Authors
Mahmud, Salih Hasan
Salih, Abd al-Karim Muhammad
Source
Journal of Engineering and Sustainable Development
Issue
Vol. 23, Issue 5 (30 Sep. 2019), pp.55-70, 16 p.
Publisher
al-Mustansyriah University College of Engineering
Publication Date
2019-09-30
Country of Publication
Iraq
No. of Pages
16
Main Subjects
Information Technology and Computer Science
Topics
- Information(Massmedia)
- Information transfer
- Electric power transmission lines
- Communication systems
- Local area networks
- Computer security
- Amplitude modulation
- Orthogonal frequency division multiplexing
- Negativity bias
Abstract EN
Due to the increasing demand for communications services, particularly the application of broadband multimedia services, it has become necessary to search for easy, low cost and reliable communications with information security.
Communications via power lines PLC have become an attractive environment for communications services because of the power grid covering large areas of the world.
This research will discusses the most important factors affecting the efficiency of PLC systems, and will focus more on distance between modems and change in load within the network.
A set of modems has been connected to the local area network LAN, performing the tests at different distances, then switching the load and observing changes in system efficiency.
The practical results have shown that the long distance had a negative effect, also the change in load has a significant negative impact on the rate of transfer of information and efficiency, as described later in the practical section.
Therefore requires further practical research and full knowledge of other challenges that currently limit their widespread commercially PLC application.
Due to the increasing demand for communications services, particularly the application of broadband multimedia services, it has become necessary to search for easy, low cost and reliable communications with information security.
Communications via power lines PLC have become an attractive environment for communications services because of the power grid covering large areas of the world.
This research will discusses the most important factors affecting the efficiency of PLC systems, and will focus more on distance between modems and change in load within the network.
A set of modems has been connected to the local area network LAN, performing the tests at different distances, then switching the load and observing changes in system efficiency.
The practical results have shown that the long distance had a negative effect, also the change in load has a significant negative impact on the rate of transfer of information and efficiency, as described later in the practical section.
Therefore requires further practical research and full knowledge of other challenges that currently limit their widespread commercially PLC application.
American Psychological Association (APA)
Mahmud, Salih Hasan& Salih, Abd al-Karim Muhammad. 2019. Study of the most important factors affecting on efficiency of power line communication systems. Journal of Engineering and Sustainable Development،Vol. 23, no. 5, pp.55-70.
https://search.emarefa.net/detail/BIM-1114434
Modern Language Association (MLA)
Mahmud, Salih Hasan& Salih, Abd al-Karim Muhammad. Study of the most important factors affecting on efficiency of power line communication systems. Journal of Engineering and Sustainable Development Vol. 23, no. 5 (Sep. 2019), pp.55-70.
https://search.emarefa.net/detail/BIM-1114434
American Medical Association (AMA)
Mahmud, Salih Hasan& Salih, Abd al-Karim Muhammad. Study of the most important factors affecting on efficiency of power line communication systems. Journal of Engineering and Sustainable Development. 2019. Vol. 23, no. 5, pp.55-70.
https://search.emarefa.net/detail/BIM-1114434
Data Type
Journal Articles
Language
English
Notes
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Record ID
BIM-1114434