Adaptive Beam Sensing for Precision and Resource Utilization
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Solution Overview
Problem
Current sensing methods face challenges in meeting diverse sensing precision requirements and optimizing resource utilization due to fixed beam configurations, leading to inefficient resource use and limited precision.
Innovation Solution
A sensing method that dynamically determines beam information based on the sensing object, allowing adaptive resource allocation and precision adjustment through beam width, direction, and type, enabling cooperative sensing between devices.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Productivity
If a common sensing operation procedure is used for a specific location or range, then the sensing operation can be performed, but the sensing precision is limited and resource utilization is low
Solution Approach 1:
The patent applies dynamics by making the beam configuration adjustable and adaptive rather than fixed. The controlling device dynamically determines beam information (beam width, beam direction, beam type) based on the specific sensing object and requirements, allowing the system to transition between different sensing modes (e.g., wide beam for area sensing, narrow beam for target sensing) to optimize both resource utilization and precision for each specific task
Solution Approach 2:
The patent changes key parameters of the beam configuration including beam width, beam direction, and beam type based on the sensing object characteristics. By adjusting these parameters dynamically, the system can adapt to different sensing scenarios - using wider beams for area coverage to improve resource utilization and narrower beams for specific targets to enhance precision, thereby resolving the contradiction between the two requirements
2Adaptability or versatility
If a fixed beam configuration is used, then the device complexity is reduced, but the adaptability to different sensing objects is limited
Solution Approach 1:
The patent applies preliminary action by having the controlling device pre-determine the optimal beam information based on the sensing object type and requirements before the actual sensing operation. The system proactively selects appropriate beam width, direction, and type in advance, which simplifies the overall system architecture while maintaining high adaptability - the complexity is managed through intelligent control algorithms rather than complex hardware configurations
Solution Approach 2:
The patent implements universality by designing a single sensing device that can perform multiple sensing functions through configurable beam parameters. The same sensing hardware can adapt to different sensing objects (areas, targets, specific locations) by changing beam configuration, eliminating the need for multiple specialized devices and reducing overall system complexity while maintaining versatility
Data Source
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AI summary
This application provides a sensing method and a related apparatus. The method includes: A control device receives a sensing request from a requesting device. The sensing request includes information indicating a sensing object. The control device determines first beam information based on the information indicating the sensing object. The first beam information indicates a beam used to perform sensing on the sensing object. The control device sends first sensing control information to a first sensing device. The first sensing control information includes the first beam information, and the first sensing device is configured to perform sensing on the sensing object. According to the technical solutions provided in this application, sensing resource utilization can be improved, and diversified sensing precision requirements can be met.