One-Way SRS Transmission via Pre-Scheduled Bandwidth Reservation

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Solution Overview

Problem

Current methods for information transmission, particularly for large blocks of data including real-time video content, are inefficient and costly, necessitating improved deployment and pricing strategies for information system networks and transmission methodologies.

Innovation Solution

A one-way information transmission method that analyzes customer requirements to determine the appropriate format, transmission priority, and available resources, scheduling a pre-emptible data reservation, transforming and encapsulating the payload, and transmitting it across a network backbone while offering price quotes for different transmission options based on compression and timing.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Productivity

If traditional information transmission methods are used for large blocks of data including real-time video content, then transmission can be performed without pre-scheduling, but transmission efficiency is low and cost is high

Engineering Contradiction:
Improvetransmission efficiencyVSAvoidtransmission cost
Core Design Contradiction:
ProductivityVSLoss of energy

Solution Approach 1:

The patent implements pre-scheduling of transmission resources before actual data transmission. The system analyzes customer requirements in advance, determines appropriate formats, schedules transmission slots, and reserves bandwidth resources beforehand. This preliminary action enables efficient bulk data transmission including real-time video content by avoiding last-minute resource allocation, thereby improving transmission efficiency and reducing costs through optimized resource utilization.

Inventive Principle:
Principle #10Preliminary action

2Loss of energy

If transmission resources are reserved in advance, then transmission cost is reduced, but flexibility to accommodate urgent transmissions is limited

Engineering Contradiction:
Improvetransmission costVSAvoidtransmission flexibility
Core Design Contradiction:
Loss of energyVSAdaptability or versatility

Solution Approach 1:

The patent creates a dynamic transmission scheduling system that balances pre-reserved resources with real-time adaptability. The system maintains scheduled transmission slots for cost efficiency while incorporating mechanisms to accommodate urgent transmissions by dynamically adjusting resource allocation. This dynamic approach allows the system to switch between pre-scheduled and ad-hoc transmission modes based on actual needs, reducing costs while preserving flexibility for time-sensitive data.

Inventive Principle:
Principle #15Dynamics

3Loss of time

If data is transmitted in real-time without pre-processing, then transmission time is reduced, but transmission quality and reliability are compromised

Engineering Contradiction:
Improvetransmission timeVSAvoidtransmission reliability
Core Design Contradiction:
Loss of timeVSReliability

Solution Approach 1:

The patent performs preliminary analysis and preparation of data before transmission. The system analyzes customer supplied information to determine optimal formats, performs necessary transformations, and prepares data packets in advance. This pre-processing ensures data is ready for immediate transmission without compromising quality or reliability, as all necessary preparations are completed during the analysis phase before the actual transmission begins.

Inventive Principle:
Principle #10Preliminary action

Data Source

PatentUS8401035B2One way SRS information transmission method
Publication Date: 2013.03.19 LEVEL 3 COMMUNICATIONS LLC
  • US8401035B2 patent drawing
  • US8401035B2 patent drawing
  • US8401035B2 patent drawing

AI summary

An exemplary method of one way transmission of information is provided, the exemplary method steps preferably include partitioning a portion of each network device along a transmission path (based on a configuration of a source adaptive translation device), to form a source dedicated one way transmission path, analyzing source customer supplied information received by the source adaptive translation device to discern the source supplied information format, mapping the source discerned supplied information into a first synchronous transport signal using the source adaptive translation device, transmitting the first synchronous transport signal across the source dedicated one way transmission path, receiving the first synchronous transport signal at a destination adaptive destination device, and remapping the received first synchronous transport signal back into the discerned source supplied information using the destination adaptive translation device.