Paper
12 July 2024 Load monitoring of distribution terminal-based handover algorithm of power grid for satellite communication
Liang Han, Lin Zhang, Xiao Zhang, Shici Li, Haitao Xu
Author Affiliations +
Proceedings Volume 13185, International Conference on Communication, Information, and Digital Technologies (CIDT2024) ; 131850J (2024) https://doi.org/10.1117/12.3032754
Event: International Conference on Communication, Information and Digital Technologies, 2024, Wuhan, China
Abstract
In recent years, satellite communications have developed rapidly, which provides some new solutions for the power grid service while ground networks are unreachable or untrustworthy. In consideration of the intermittent, periodic, high reliability requirements, short single service, large total data, and other characteristics of power grid communication, in order to ensure the efficient and reliable transmission of important power grid information, a load monitoring of distribution terminal-based handover algorithm of power grid for satellite communication (LMSPG) is proposed. This algorithm takes the load status of the distribution terminal as one of the handover factors of the power communication network, solves the optimal handover trigger condition of power grid satellite communication by improved particle swarm optimization algorithm, and realizes the maximum effect of the system at the same time. The experimental simulation verifies that the proposed algorithm can improve the stability and reliability of power grid communication service transmission.
(2024) Published by SPIE. Downloading of the abstract is permitted for personal use only.
Liang Han, Lin Zhang, Xiao Zhang, Shici Li, and Haitao Xu "Load monitoring of distribution terminal-based handover algorithm of power grid for satellite communication", Proc. SPIE 13185, International Conference on Communication, Information, and Digital Technologies (CIDT2024) , 131850J (12 July 2024); https://doi.org/10.1117/12.3032754
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KEYWORDS
Power grids

Telecommunications

Satellite communications

Particle swarm optimization

Particles

Reliability

Switching

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