Sensory Communication System Using Remote APIs for Biometric Data Exchange
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Solution Overview
Problem
Current telecommunications technologies are limited to exchanging only audiovisual information, failing to support the sharing of detailed user information such as historical state, environmental conditions, and physical/emotional data during communication sessions, which limits the depth of interaction between users.
Innovation Solution
A sensory communication system that utilizes remote sensory APIs and sensor event notifications to enable the exchange of sensory information between communication devices, including biometric data, environmental conditions, and user states, allowing for enhanced interaction through virtual reality applications.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Loss of information
If only audiovisual information is exchanged in communication sessions, then the communication system remains simple and compatible with existing devices, but the depth and richness of user interaction is limited
Solution Approach 1:
The patent extends communication beyond traditional audiovisual dimensions by incorporating sensory data dimensions (temperature, motion, location, biometric information). This dimensional expansion allows users to share physical and environmental context, transforming 2D video calls into multi-dimensional sensory experiences that convey deeper user state information.
Solution Approach 2:
The communication system is designed to handle multiple types of information simultaneously - audiovisual data, sensory data, environmental data, and biometric data - through a unified platform. This multi-functionality allows the same communication infrastructure to support diverse interaction modes without requiring separate specialized systems.
2Adaptability or versatility
If sensory information exchange is implemented, then user interaction depth is enhanced, but the complexity of the communication system increases
Solution Approach 1:
The patent introduces intermediary components including sensor modules that collect data, communication modules that transmit data, and processing systems that interpret sensory information. These intermediaries abstract the complexity of sensory data handling, allowing standard communication devices to participate in enhanced sensory communication without requiring complete system redesign.
Solution Approach 2:
The communication system is divided into independent functional modules: sensory data collection modules, data transmission modules, and data processing modules. This segmentation allows each component to be developed, tested, and optimized independently, reducing overall system complexity while enabling comprehensive sensory communication capabilities.
3Loss of information
If detailed sensory data is transmitted over the network, then context-aware communication is enabled, but the network bandwidth and data processing requirements increase
Solution Approach 1:
The system extracts and transmits only the most relevant sensory data elements needed for context-aware communication, such as key biometric indicators, essential environmental conditions, and significant motion events. By filtering out redundant or less important data, the system maintains rich contextual information while reducing overall data transmission volume and network resource consumption.
Data Source
AI summary
A method and system for enhanced human to human and human to machine interactions employs a sensory communication session that spans from end user device to end user device across a network. The sensory communication session includes remote sensory application programming interfaces that provide standardized access to applications executing on user communication devices. The sensory communication session enables enhanced interactions with a deeper quality of experience and enables each communicating user to better discern feelings, situation, and other environmental and personal context associated with the other user.


