Telecommunication Network Delivery Scheduling via Location Mapping
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Solution Overview
Problem
Existing methods for automated delivery schedules in telecommunication service networks fail to identify and locate all relevant networks, inspect specific network features, account for network updates, and provide bit information associated with IP addresses.
Innovation Solution
The system identifies telecommunication networks and their location data, maps this data with MID server location data to determine the shortest distance, and assigns an automated delivery schedule from the nearest MID server to the network endpoint.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If automated delivery schedules are implemented without location-based optimization, then system complexity is reduced, but delivery efficiency and accuracy deteriorate
Solution Approach 1:
The system performs preliminary actions by pre-mapping location data for all telecommunication networks and MID servers before delivery scheduling. Location data including latitude, longitude, and physical addresses are collected and stored in advance, enabling rapid distance calculations and optimal MID server selection without real-time complexity
Solution Approach 2:
A location data mapping system acts as an intermediary between telecommunication networks and MID servers. This intermediary layer stores and manages location information, facilitating efficient matching and distance calculation without requiring direct complex interactions between networks and servers
2Measurement precision
If comprehensive network identification and location mapping are performed, then delivery accuracy is improved, but processing time increases
Solution Approach 1:
Location data for telecommunication networks and MID servers is collected, validated, and mapped in advance before delivery scheduling is needed. This preliminary mapping of geographic coordinates and physical addresses enables rapid accurate matching without time-consuming real-time processing
Solution Approach 2:
The system extracts only the essential location data elements (latitude, longitude, physical address) needed for delivery scheduling from comprehensive network information. This extraction of critical location attributes enables accurate delivery scheduling without processing unnecessary network configuration details
3Productivity
If distance-based MID server selection is implemented, then delivery optimization is improved, but computational requirements increase
Solution Approach 1:
The system pre-calculates and stores location-based metrics such as geographic coordinates and physical addresses for all networks and MID servers. This preliminary preparation enables efficient distance calculations using straightforward geometric formulas rather than complex real-time computations
Solution Approach 2:
The system uses computationally inexpensive distance calculation methods based on stored location data rather than complex routing algorithms. Simple distance metrics serve as sufficient proxies for optimal delivery scheduling, reducing computational power requirements while maintaining effectiveness
Data Source
AI summary
Methods, media, and systems are provided for automated delivery schedules for telecommunication networks associated with a particular provider. The methods, media, and systems identify telecommunication networks corresponding to the provider. Additionally, location data for each of the telecommunication networks is received. The location data may be associated with one or more IP addresses for each telecommunication network. Servers or server clusters are identified along with associated location data for the servers or server clusters. The servers or server clusters are also associated with the provider. The location data for each of the telecommunication networks and the location data for each of the servers or server clusters are mapped. A distance between at least one of the telecommunication networks and at least one of the servers or server clusters is determined. Based on the distance determined, a telecommunication network is assigned a delivery schedule.


