Visible to the public Research on Nonlinear Frequency Hopping Communication Under Big Data

TitleResearch on Nonlinear Frequency Hopping Communication Under Big Data
Publication TypeConference Paper
Year of Publication2019
AuthorsLi, J., Liu, H., Wu, J., Zhu, J., Huifeng, Y., Rui, X.
Conference Name2019 International Conference on Computer Network, Electronic and Automation (ICCNEA)
Date Published Sept. 2019
PublisherIEEE
ISBN Number978-1-7281-3977-7
KeywordsBig Data, big data safety evaluation framework, big data security, communication data informatization processing methods, communication safety evaluation framework, data information, Frequency conversion, frequency hop communication, Frequency Hopping Communication, Frequency modulation, Frequency synchronization, Interference, Metrics, Non - Linearity, nonlinear frequency hopping communication, pubcrawl, radiofrequency interference, resilience, Resiliency, safety assessment, Scalability, security, security of data, spread spectrum communication, statistical analysis, Time Frequency Analysis, Time-frequency Analysis
Abstract

Aiming at the problems of poor stability and low accuracy of current communication data informatization processing methods, this paper proposes a research on nonlinear frequency hopping communication data informatization under the framework of big data security evaluation. By adding a frequency hopping mediation module to the frequency hopping communication safety evaluation framework, the communication interference information is discretely processed, and the data parameters of the nonlinear frequency hopping communication data are corrected and converted by combining a fast clustering analysis algorithm, so that the informatization processing of the nonlinear frequency hopping communication data under the big data safety evaluation framework is completed. Finally, experiments prove that the research on data informatization of nonlinear frequency hopping communication under the framework of big data security evaluation could effectively improve the accuracy and stability.

URLhttps://ieeexplore.ieee.org/document/8912119
DOI10.1109/ICCNEA.2019.00071
Citation Keyli_research_2019