Emergency Data Integration Interfaces for Hybrid Location Delivery
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Solution Overview
Problem
Emergency service providers lack the capacity for sophisticated communications beyond audio calls, and location determination in emergencies often lacks precision, leading to delays in response due to reliance on distressed callers for location information.
Innovation Solution
An emergency management system that gathers and delivers device-based hybrid locations and additional data, such as medical history and video feeds, to emergency service providers through a graphical user interface, enabling automatic data delivery and integration with existing PSAP systems.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If emergency service providers use traditional audio call systems, then device complexity is reduced, but communication functionality and information delivery are limited
Solution Approach 1:
The patent introduces an intermediary system that bridges traditional PSAP audio call systems and modern data-rich emergency communication needs. This intermediary layer processes and delivers location data, medical history, and other critical information without requiring complete system replacement, thus enhancing functionality while managing complexity.
Solution Approach 2:
The emergency communication system is designed to handle multiple functions including audio calls, location tracking, medical data transmission, and real-time communication between first responders and control centers. This multi-functional approach allows a single system to address diverse emergency scenarios without requiring separate specialized systems.
2Measurement precision
If location determination uses adjacent cellular towers, then system complexity is reduced, but location precision is insufficient for rapid emergency response
Solution Approach 1:
The patent combines multiple location determination methods including cellular tower triangulation, GPS satellite positioning, and Wi-Fi network-based locationing. By merging these approaches, the system achieves high-precision location data without relying on a single complex system, thus improving accuracy while distributing technical complexity across multiple established technologies.
3Productivity
If emergency responders rely on distressed callers for location information, then device complexity is reduced, but response time increases due to communication limitations
Solution Approach 1:
The system performs preliminary actions by automatically determining and transmitting the caller's location data, medical history, and other critical information before the emergency response begins. This pre-delivery of information eliminates the time-consuming back-and-forth communication that would otherwise be needed to obtain this data during the emergency.
Solution Approach 2:
The system implements feedback mechanisms where location data and emergency information are continuously updated and transmitted from the caller's device to the control center and first responders. This real-time feedback loop ensures that all parties have current information without requiring additional communication from the distressed caller.
4Loss of information
If additional data such as medical history and video feeds are integrated, then information completeness is improved, but data management complexity and security requirements increase
Solution Approach 1:
The patent segments emergency data into distinct categories including location information, medical history, real-time video feeds, and caller details. Each data type is managed through dedicated protocols and transmission channels, which simplifies the overall data management complexity while ensuring complete information delivery. This segmentation also enables targeted security measures for different data types.
Data Source
AI summary
Described herein are systems, devices, methods, and media providing emergency data to public safety answering points (PSAPs). Also provided are systems, methods, and media for utilizing location data and geofences to provide emergency data to PSAPs and interactive graphical displays to efficiently display relevant emergency data.


