Electromagnetic Wave Data Transmission System Architecture
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Solution Overview
Problem
Existing electromagnetic wave data transmission systems lack efficient large-scale transmission principles, specific protocol establishment methods, and means to improve data transmission speed, leading to limitations in scalability and interference management.
Innovation Solution
A system comprising a ground main information node, communication satellite, relay satellite, and uplink control carrier chain, utilizing independent electromagnetic waves and adaptive modulation to enhance data transmission speed and security, while reducing interference and energy consumption by employing multiple antenna emission units and position referencing techniques.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If electromagnetic wave data transmission is implemented without specific large-scale transmission principles and protocol establishment methods, then basic transmission can be achieved, but data transmission speed and scalability are limited
Solution Approach 1:
The system segments the electromagnetic wave spectrum into multiple frequency bands, each capable of independent data transmission. This allows parallel transmission channels to be created, significantly increasing data transmission speed while maintaining manageable system complexity through modular frequency band management
Solution Approach 2:
The patent introduces protocol establishment methods that organize data transmission in temporal and spatial dimensions, creating structured transmission frameworks that enable scalable system expansion without proportionally increasing complexity
2Productivity
If multiple terminals transmit uplink data simultaneously without uplink rules, then communication capacity increases, but signal interference increases
Solution Approach 1:
The system implements periodic uplink transmission slots assigned to different terminals through established protocols. This structured periodic access allows multiple terminals to communicate simultaneously across different time slots and frequency bands, increasing overall communication capacity while preventing signal interference through temporal separation
Solution Approach 2:
The patent employs dynamic parameter allocation including frequency band assignment, time slot allocation, and power level adjustment based on terminal requirements and channel conditions. This adaptive parameter management enables high communication capacity while maintaining signal quality by optimizing transmission parameters for each terminal
3Quantity of substance
If basic electromagnetic wave transmission is used without protocol establishment, then system simplicity is maintained, but data transmission volume and security are insufficient
Solution Approach 1:
The system establishes transmission protocols and frequency band allocations in advance before actual data transmission begins. This preliminary protocol setup creates structured frameworks for high-volume data transmission while containing complexity in the initialization phase, allowing simplified operation during active transmission
Solution Approach 2:
The patent implements standardized protocol templates and frequency band configurations that can be replicated across multiple transmission channels and terminals. This copying approach enables high data transmission volume through channel multiplication while managing complexity through standardized reusable protocol structures
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The solution significantly increases data transmission speed, reduces interference, and enhances security and confidentiality, while minimizing the need for wireless spectrum bandwidth and upgrading requirements for ground wireless digital base stations.
Implementation Method 1
The relay satellite antenna unit externally receives the electromagnetic waves; the relay satellite antenna unit includes an antenna, an electromagnetic oscillation circuit, a detection and control unit, and an electromagnetic signal transmission wire of the electromagnetic oscillation circuit. The relay satellite antenna unit directly imports electromagnetic wave signal data received by a receiving antenna into a signal input end of a resonant circuit of a emitting antenna, uses a new type of receiving electromagnetic wave direct conversion and control emitting electromagnetic wave circuit, and a relay signal is directly converted into another set of electromagnetic waves.
Data Source
AI summary
A system for electromagnetic wave data transmission, including a ground main information node, a communication satellite, a relay satellite, an uplink control carrier, and a relay satellite antenna unit. The ground main information node is connected to an external network by a broadband cable; and the ground main information node is connected to the communication satellite by the relay satellite. The communication satellite includes a service range of the communication satellite, and the communication satellite is separately connected to a plurality of mobile terminals and a ground data collection node. The mobile terminals and the ground data collection node are arranged within the service range of the communication satellite. The mobile terminals include data collection nodes; additionally, the ground data collection node is arranged within a service range of the ground data collection node.


