A Communication Application Design Framework Based on Mesh Network Architecture for Folk Song Dissemination

Authors

  • Xin Liu DFA Candidate, Doctor of Fine Arts Program in Musicology, International College, Krirk University, Bangkok, Thailand
  • Anqi Tang Professor, Dr., Doctor of Fine Arts Program in Musicology, International College, Krirk University, Bangkok, Thailand

DOI:

https://doi.org/10.17762/ijcnis.v16i2.6599

Keywords:

Mesh, Network Architecture, Communication Application Design Framework, Folk Song Dissemination, Real-time Reliable Data

Abstract

This document suggests a pair of optimization and enhancement algorithms for Mesh network architecture to foster the spread of folk songs and evaluates these algorithms within a communication design framework. Proposed are communication applications utilizing Mesh network architecture. The average end-to-end delay of the improved expected transmission time metric algorithm is is lower than that of other algorithms; The channel allocation algorithm of wireless mesh network structure improves the throughput by about 16% with the same number of data streams; The real-time reliable data transmission delay of the folk music dissemination framework is significantly lower than that of the non-realtime reliable data network; The mean delay from start to finish in the real-time dependable data transfer within the folk music distribution system is markedly less compared to that in a non-realtime dependable data network.; The folk music communication framework's real-time reliable data transmission experiences an average end-to-end delay, with an average data reception rate surpassing that of non-real-time reliable data, and the real-time reliable data. The rate of receiving usable data from start to finish remains largely unaltered regardless of the amount of communication data; Upon functional testing of the Application (APP), the Central Processing Unit (CPU) usage rate in most tasks remains under 10%; however, during the system's operation, both the occupied memory and CPU usage on the Personal Computer (PC) side is significantly lower. During the operation of the framework, the PC side's occupied memory and CPU usage rate maintain a comparatively steady state.

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Published

2024-07-08

How to Cite

Liu, X., & Tang, A. (2024). A Communication Application Design Framework Based on Mesh Network Architecture for Folk Song Dissemination. International Journal of Communication Networks and Information Security (IJCNIS), 16(2). https://doi.org/10.17762/ijcnis.v16i2.6599

Issue

Section

Research Articles