Custom Spatial Region Configuration for Accurate Target Detection
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Solution Overview
Problem
Existing region configuration methods in IoT systems lack flexibility, leading to low accuracy in target detection.
Innovation Solution
A region configuration method that allows users to customize spatial regions and configure attribute information for target detection, using a computer device to display a region management page, obtain user selections, and generate custom regions with adapted function items.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If uniform region configuration is used for all devices in target spaces, then device complexity is reduced and ease of operation is improved, but target detection accuracy deteriorates
Solution Approach 1:
The patent applies local quality by allowing different region configurations and attribute information to be assigned to different spatial regions. Each region can have customized detection parameters, target types, and attribute settings tailored to specific monitoring needs, thereby improving target detection accuracy without requiring uniform configuration across all spaces.
Solution Approach 2:
The patent segments the target space into multiple customizable spatial regions, each with independent configuration options. Users can divide a large space into smaller functional zones (e.g., living room, bedroom, office) and apply different detection settings to each segment, resolving the contradiction between customization and complexity.
2Adaptability or versatility
If uniform region configuration is used for all devices in target spaces, then ease of operation is improved, but flexibility of spatial configuration deteriorates
Solution Approach 1:
The patent provides preset region templates and default attribute configurations that can be applied immediately upon creating a new region. This preliminary preparation of common configuration patterns allows users to quickly set up regions with appropriate settings without manual customization, maintaining ease of operation while enabling spatial flexibility.
Solution Approach 2:
The patent implements dynamic region configuration where spatial boundaries and attributes can be adjusted in real-time based on user needs. Regions can be created, modified, merged, or deleted dynamically, and attribute information can be updated without system reconfiguration, providing adaptability while maintaining operational simplicity through intuitive interfaces.
Data Source
AI summary
The present disclosure relates to a region configuration method, a target detection method, and a device, includes: displaying a region management page; the region management page comprising a spatial region corresponding to a target space; obtaining a user selection of an arbitrary area within the spatial region, and generating a custom region; in response to a selection operation directed to the custom region, displaying a function configuration page for the custom region; obtaining a function item selected on the function configuration page, and displaying, on the function configuration page, configured attribute information adapted to the function item for the custom region; wherein the attribute information is configured for target detection within each custom region.


