Security Surveillance Gateway for Accurate User Location Tracking
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Solution Overview
Problem
Current security surveillance systems inaccurately determine a user's location and surroundings when the mobile device is not on their person, leading to miscommunication and potential danger during emergencies, as they rely on the device's location systems and real-time visualization, which can be incorrect if the device is in a different location.
Innovation Solution
Implementing security surveillance gateways that use the device's location as a starting point and combine data from other devices like cameras and phones to accurately determine the user's location and provide real-time visualization, independent of the mobile device's position, using non-terminal identification components like beacons and sensors to enhance location accuracy and communication.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If the system relies on the mobile device's location systems and real-time visualization, then the system can provide location information and visualization, but the location accuracy deteriorates when the device is not on the user's person
Solution Approach 1:
The patent introduces security surveillance gateways as intermediary components that independently determine user location using facility-based sensors and beacons. These gateways act as mediators between the user and the security system, providing accurate location information even when the mobile device is not on the user's person, thus resolving the contradiction between maintaining location accuracy and ensuring reliability when device separation occurs
Solution Approach 2:
The system segments the location determination function from the mobile device to independent facility-based security surveillance gateways. Each gateway independently monitors and determines user location using local sensors and beacons, allowing the system to maintain accurate location tracking without relying on the mobile device's position, thereby resolving the accuracy-reliability contradiction
2Loss of information
If the system uses the mobile device for real-time visualization, then communication between user and security administrators is established, but miscommunication occurs when the device location differs from user location
Solution Approach 1:
Security surveillance gateways serve as intermediaries that independently determine and communicate user location to security administrators. This intermediary system ensures that location information transmitted for communication purposes accurately reflects the user's actual position rather than the mobile device's position, eliminating miscommunication while maintaining communication effectiveness
Solution Approach 2:
The system implements feedback mechanisms where security surveillance gateways continuously monitor user location through facility-based sensors and beacons, and provide real-time location corrections to the communication system. This feedback loop ensures that communication accuracy is maintained by constantly updating the true user location independent of device position
3Ease of operation
If the system relies on the mobile device running the application, then identifying information and location data can be obtained, but the system fails to accurately locate the user when the device is separated from the user
Solution Approach 1:
The patent extracts the location determination function from the mobile device and places it in facility-based security surveillance gateways. This extraction allows the system to maintain ease of operation with minimal user action while simultaneously ensuring accurate location precision through independent facility-based monitoring that does not depend on device proximity to the user
Data Source
AI summary
Systems and methods are provided for a virtual reality security surveillance system (SSS) to generate a virtual reality map to display virtual reality presentations of a facility. The virtual reality presentations of a facility may display, in real-time, the structure of the facility along with the locations of all devices, persons, incidents, and other objects present in the facility at any given moment in time. The SSS may continuously monitor the facility and locations of devices, persons and incidents in a facility, and update the virtual reality presentations of the facility. In addition to displaying virtual reality presentations, the SSS may detect the presence of new devices and incidents in the facility. The SSS may further communicate with one or more devices to interact with one or more persons in the facility, including providing alerts and/or instructions to the one or more persons regarding any incidents that may concern them.


