Camera NFC Tag Scenario Adaptation
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Solution Overview
Problem
Outdoor photography devices require manual adjustment of software functions and photographing parameters for different scenarios, which is complex and inconvenient for users.
Innovation Solution
A photographing device equipped with a near field identification tag and a processor that determines the current application scenario by identifying the tag identification code, allowing adaptive adjustment of software functions and photographing parameters based on pre-defined modes.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If manual adjustment of software functions and photographing parameters is used for different scenarios, then the device can adapt to various application scenarios, but the operation complexity increases and user convenience deteriorates
Solution Approach 1:
The photographing device automatically identifies the current scenario through NFC tag recognition and self-adjusts software functions and photographing parameters without requiring user intervention. The system serves itself by autonomously selecting appropriate settings based on the identified scenario, eliminating the need for manual parameter adjustment while maintaining adaptability across different application scenarios.
2Measurement precision
If manual adjustment of photographing parameters is required for scenario switching, then precise control over photographing settings is achieved, but the time consumption and operational complexity increase
Solution Approach 1:
Different scenario settings are pre-configured in the system, including specific software functions and photographing parameters for each scenario type. When a scenario is identified through NFC tag recognition, the corresponding pre-configured settings are automatically activated, eliminating the need for real-time parameter adjustment while ensuring precise and appropriate photographing parameters are applied for each scenario.
3Adaptability or versatility
If multiple software functions and photographing parameters need to be adjusted for different scenarios, then the device functionality is optimized for each scenario, but the device complexity and ease of operation are compromised
Solution Approach 1:
NFC tags serve as intermediaries that carry scenario identification information. When the photographing device approaches a mounting carrier with an NFC tag, the tag automatically transmits scenario identification data to the device. This intermediary mechanism simplifies the system by replacing complex manual adjustment interfaces with automatic tag-based scenario recognition, reducing operational complexity while maintaining comprehensive scenario-specific optimization capabilities.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The device automatically adjusts software functions and photographing parameters to suit the current scenario, enhancing user experience and convenience by simplifying the process.
Implementation Method 1
The tag identification module is configured to identify a tag identification code of the near field identification tag when the photographing device approaches the near field identification tag
Data Source
AI summary
This application provides a photographing device and self-adaptive method of software functions and photographing parameters thereof. The photographing device comprises a photographing module configured to be mounted on a mounting carrier to photograph images, the mounting carrier is provided with a near field identification tag; a memory, configured to store a relationship table recording correspondence between a plurality of preset tag identification codes and a plurality of photographing modes, each photographing mode has corresponding software functions and photographing parameters; a tag identification module, configured to identify a tag identification code of the near field identification tag when the photographing device approaches the near field identification tag; and a processor, configured to determine a photographing mode corresponding to the tag identification code from the relationship table according to the identified tag identification code, and adaptively adjust the software functions and photographing parameters of the photographing module according to the photographing mode.


