Content area
The widespread use of electromagnetic space utilization technology across various fields—including maritime, terrestrial, aeronautical, orbital, electrical, and telecommunications—has generated vast amounts of electromagnetic environment data. To manage challenges, such as the storage of large raw datasets, data discrepancies, isolated data across multiple pathways, and low data value density, a big data-based electromagnetic environment data warehouse is proposed. This warehouse standardizes data from diverse sources, integrates and reconstructs it according to business themes, and uses a mix of relational and non-relational databases for storage. It meets the needs for high data reliability, fast access, and massive storage capacity, offering a solution to data overload while supporting data mining and knowledge discovery in the electromagnetic field.
Details
Electromagnetics;
Databases;
Reliability;
Management decisions;
Data mining;
Datasets;
Big Data;
Aeronautical research;
Data processing;
Relational data bases;
Storage capacity;
Space warfare;
Technology;
Storage;
Data models;
Warehouses;
Maritime industry;
Space technology;
Electromagnetism;
Electromagnetic waves;
Data warehouses;
Decision making;
Design;
Discrepancies;
Information retrieval;
Research applications;
Environment;
Electromagnetic fields
1 22nd Research Institute of China Electronics Corporation, China
2 22nd Research Institute of China Electronics Corporation, China & Xiamen University, China
3 Qingdao Preschool Education College, China
