18372370. USING AUGMENTED REALITY TO VISUALIZE OPTIMAL WATER SENSOR PLACEMENT simplified abstract (STATE FARM MUTUAL AUTOMOBILE INSURANCE COMPANY)
Contents
- 1 USING AUGMENTED REALITY TO VISUALIZE OPTIMAL WATER SENSOR PLACEMENT
- 1.1 Organization Name
- 1.2 Inventor(s)
- 1.3 USING AUGMENTED REALITY TO VISUALIZE OPTIMAL WATER SENSOR PLACEMENT - A simplified explanation of the abstract
- 1.4 Simplified Explanation
- 1.5 Key Features and Innovation
- 1.6 Potential Applications
- 1.7 Problems Solved
- 1.8 Benefits
- 1.9 Commercial Applications
- 1.10 Prior Art
- 1.11 Frequently Updated Research
- 1.12 Questions about Augmented Reality Water Sensor Placement Guidance System
- 1.13 Original Abstract Submitted
USING AUGMENTED REALITY TO VISUALIZE OPTIMAL WATER SENSOR PLACEMENT
Organization Name
STATE FARM MUTUAL AUTOMOBILE INSURANCE COMPANY
Inventor(s)
Sean Kingsbury of Bloomington IL (US)
USING AUGMENTED REALITY TO VISUALIZE OPTIMAL WATER SENSOR PLACEMENT - A simplified explanation of the abstract
This abstract first appeared for US patent application 18372370 titled 'USING AUGMENTED REALITY TO VISUALIZE OPTIMAL WATER SENSOR PLACEMENT
Simplified Explanation
The patent application discusses using augmented reality to visualize optimal locations for water sensors near a structure.
- Augmented reality (AR) is used to show where water sensors should be placed near a building.
- Data about the AR viewer's field of view is combined with information about where the water sensors should go.
- The AR display guides users on where to place the water sensors near the structure.
Key Features and Innovation
- Integration of augmented reality technology with water sensor placement.
- Correlation of underlay layer data with overlay layer data to create an AR display.
- Instructional guidance provided through the AR display for optimal water sensor placement.
Potential Applications
- Building maintenance and monitoring.
- Flood prevention and early warning systems.
- Environmental monitoring near structures.
Problems Solved
- Difficulties in determining optimal locations for water sensors near buildings.
- Lack of visual guidance for sensor placement.
- Inefficient monitoring of water-related risks near structures.
Benefits
- Enhanced accuracy in water sensor placement.
- Improved monitoring and early detection of water-related issues.
- Streamlined maintenance and management of structures.
Commercial Applications
"Augmented Reality Water Sensor Placement Guidance System for Building Maintenance and Monitoring"
This technology can be utilized in various industries such as construction, real estate, and infrastructure development to ensure efficient water sensor placement and monitoring near structures. It can also be integrated into smart building systems for proactive maintenance and risk mitigation.
Prior Art
Potential areas to search for prior art related to this technology include patents or publications on augmented reality applications in construction, sensor placement guidance systems, and water monitoring technologies.
Frequently Updated Research
Stay updated on advancements in augmented reality technology, sensor placement algorithms, and water monitoring systems to enhance the effectiveness and accuracy of the proposed solution.
Questions about Augmented Reality Water Sensor Placement Guidance System
How does this technology improve the efficiency of water sensor placement near structures?
This technology utilizes augmented reality to visually guide users on the optimal placement locations for water sensors, enhancing accuracy and efficiency in sensor deployment.
What are the potential applications of this system beyond building maintenance and monitoring?
This system can also be applied in flood prevention, environmental monitoring, and infrastructure development to ensure effective water sensor placement and monitoring.
Original Abstract Submitted
Systems and methods disclosed herein relate to using augmented reality (AR) to visualize an optimal placement location of one or more water sensors proximate a structure. Underlay layer data indicative of a field of view associated with an AR viewer device is correlated with overlay layer data that includes an indication of the water sensor optimal placement locations to create an AR display. The AR viewer displays the AR display which includes an instruction for the placing one or more water sensors proximate the structure.