Parallel 5G Satellite Wire Transmission Routing
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Solution Overview
Problem
5G networks face reliability issues due to failures in devices or connections, leading to coverage outages and slower speeds, as they rely on wired connections that can be prone to disruptions.
Innovation Solution
Implementing parallel satellite and wire transmissions to prioritize messages and enable near real-time network failure detection, where messages are routed via wire, satellite, or both based on priority, with the network destination system determining successful transmission within a time window and requesting re-routing if necessary.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If parallel satellite and wire transmissions are implemented, then network reliability is improved, but device complexity increases
Solution Approach 1:
The network transmission system is segmented into two independent transmission paths: satellite transmission and wire transmission. Each path operates independently to transmit messages, allowing the system to maintain reliability through path diversity while managing complexity by treating each path as a separate, standardized component
Solution Approach 2:
The network origination system and network destination system are designed to handle multiple transmission types (satellite and wire) through universal interfaces and protocols. This multi-functionality allows the same system infrastructure to support both transmission modes without requiring entirely separate systems, thereby improving reliability while controlling complexity
2Productivity
If message prioritization is implemented, then communication efficiency is improved, but system complexity increases
Solution Approach 1:
Different quality of service treatments are applied locally to different message types based on their priority levels. High-priority messages receive preferential routing and transmission resources, while standard-priority messages follow normal procedures. This localized quality differentiation improves communication efficiency for critical messages without requiring complete system redesign
Solution Approach 2:
Message priority levels are determined and routing preferences are established in advance, before actual transmission occurs. The network origination system pre-classifies messages and sets routing preferences based on message type and urgency, enabling efficient prioritization during transmission without adding complex real-time decision-making requirements
Data Source
AI summary
Embodiments are directed towards employing parallel satellite and wire transmissions to facilitate 5G communications. A network origination system receives, via 5G communication, a message from an origination device for distribution to a destination device. The network origination system determines a priority of the message and selects a transmission mechanism—wire transmission, satellite transmission, or parallel transmission—in which to transmit the message to the network destination system based on the priority. The network origination system transmits the message to a network destination system via the selected transmission mechanism. The network destination system forwards the message to the destination device and determines if the message is tagged for the parallel transmission. If the message is tagged for parallel transmission, the network destination system determines if the message is received via wire transmission and satellite transmission within a time window associated with a transmission time obtained from the message.


