Server Combining Vehicle Safety Components for Surroundings Identification
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Solution Overview
Problem
Current vehicle safety systems rely on sharing safety information between vehicles through warning sounds, which can lead to unexpected situations, necessitating a technology that enhances user awareness and safety during travel.
Innovation Solution
A server that combines safety components from multiple vehicles to improve safe distance and control, using communication circuitry, memory, and processors to identify surroundings, select the best-performing safety components, and transmit driving control commands, while adapting to changes in vehicle composition and environment.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If safety information is shared between vehicles through warning sounds, then user awareness of danger is provided, but the user must deal with unexpected situations instantly without sufficient preparation time
Solution Approach 1:
The server performs preliminary actions by combining safety components from multiple vehicles and identifying surroundings in advance. This allows the system to prepare safety assessments and warnings before dangerous situations occur, giving users sufficient time to react rather than requiring instant responses to unexpected events.
Solution Approach 2:
The server acts as an intermediary between multiple vehicles and users. It collects safety component data from various vehicles, processes this information centrally, and provides comprehensive safety assessments to users. This mediator approach enables more thorough analysis and longer preparation time compared to direct vehicle-to-vehicle warning signals.
2Reliability
If multiple vehicles share safety components information, then comprehensive safety coverage is achieved, but the complexity of managing and combining these components increases
Solution Approach 1:
The server merges safety component information from multiple vehicles into a unified safety assessment. By combining data from various sources and identifying surroundings using aggregated safety components, the system achieves comprehensive safety coverage while managing complexity through centralized processing rather than distributed coordination.
Solution Approach 2:
The server provides universal functionality by handling multiple vehicle safety component types and purposes through a single platform. It processes diverse safety data, performs unified surrounding identification, and delivers comprehensive safety assessments, reducing the need for separate systems for each vehicle or safety function.
Data Source
AI summary
A server is provided. The server includes a communicator comprising communication circuitry, a memory and a processor configured to control the server to store information on a plurality of safety components included in a plurality of vehicles received through the communicator, combine at least one safety component of the plurality of vehicles based on the information on the stored plurality of safety components, and identify surroundings of the plurality of vehicles using the combined safety components.


