Mobile Object Management via Geographic Segmentation
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Solution Overview
Problem
Current systems for managing mobile objects in geographic spaces face challenges in efficiently handling event information and transferring management responsibilities across regions, leading to inefficiencies in event notification and mobile object tracking.
Innovation Solution
A system comprising event servers, mobile object servers, and object servers that divide geographic spaces into regions, allowing for the management of events and mobile objects within each region using agents to process car probe data and provide real-time event information to mobile objects, enabling seamless transfer of management across regions.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If a centralized system manages all mobile objects and events in a geographic space, then comprehensive tracking and event notification are achieved, but system complexity and processing inefficiency increase
Solution Approach 1:
The geographic space is divided into multiple regions, with each region managed by a separate mobile object server. This segmentation allows distributed processing of mobile objects and events within each region, improving overall system efficiency while reducing the complexity burden on any single server. The system maintains comprehensive tracking capability through coordinated management across multiple regional servers.
2Reliability
If event information from all mobile objects is collected and processed centrally, then complete event coverage is achieved, but response time and processing speed decrease
Solution Approach 1:
The system divides the geographic space into multiple regions, each handled by a dedicated mobile object server. This allows parallel processing of events in different regions, significantly reducing overall processing time while maintaining complete event coverage. Each regional server independently manages events within its jurisdiction, and the system aggregates information from all regions to ensure comprehensive event visibility.
Solution Approach 2:
The system introduces regional mobile object servers as intermediary components between mobile objects and the central management system. These intermediary servers pre-process and filter event information locally before transmitting to central systems, reducing the time burden on central processors while ensuring no events are missed through coordinated regional monitoring.
3Device complexity
If mobile object management is handled by a single server, then simplified architecture is achieved, but scalability and performance under heavy load deteriorate
Solution Approach 1:
The system segments mobile object management across multiple regional servers instead of using a single centralized server. This distributed architecture improves scalability and performance under heavy load by allowing parallel processing capacity to expand with additional regional servers, while maintaining relatively simple individual server implementations that can be independently managed and scaled.
Data Source
AI summary
An embodiment of the invention may include a method, computer program product and computer system for managing mobile objects. The embodiment may receive an event detected in a geographic space by a mobile object of a plurality of mobile objects. The embodiment may determine a reliability of the event based on a reliability associated with the mobile object. The embodiment may store the event in a mobile object database based on the reliability of the even being above a reference reliability.


