Alert Communication Server for Multi-Device Condition Correlation
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Solution Overview
Problem
Existing communication systems fail to effectively coordinate and respond to user conditions and environmental situations across multiple electronic devices, lacking the ability to initiate appropriate actions based on data analysis from these devices.
Innovation Solution
An alert communication network comprising a server that processes data from subscriber and secondary devices to determine conditions, and initiates actions such as device control, communication with support providers, and data transmission, utilizing modules like correlation, device control, and transmission to manage alerts and responses.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If data from multiple electronic devices is collected and analyzed to determine user conditions and environmental situations, then the accuracy and reliability of alert determination is improved, but the device complexity and data processing requirements increase
Solution Approach 1:
The system is divided into multiple independent functional modules: correlation module for data analysis, device control module for action initiation, and transmission module for communication. Each module handles specific tasks independently, reducing overall system complexity while maintaining reliable alert determination through coordinated operation of segmented components.
Solution Approach 2:
The alert communication server acts as an intermediary between multiple electronic devices and support providers. It receives data from various devices, processes the information to determine conditions, and coordinates responses without requiring direct complex interactions between all devices, thereby simplifying the system architecture while improving reliability.
2Productivity
If the system initiates multiple actions across different devices based on determined conditions, then the responsiveness and effectiveness of the alert system is improved, but the coordination complexity and communication overhead increase
Solution Approach 1:
The device control module is pre-configured with capabilities to initiate various actions (activate microphone, activate speaker, initiate communication, display image, cause audible sounds) based on predetermined conditions. When conditions are met, the appropriate actions are automatically initiated without requiring complex real-time coordination decisions, improving response effectiveness while managing coordination complexity.
Solution Approach 2:
The alert communication server provides universal functionality by coordinating multiple types of actions across different device types (electronic devices with microphones, speakers, displays, communication capabilities). This multi-functional approach allows the same system architecture to handle diverse alert responses, improving productivity without proportionally increasing coordination complexity.
3Measurement precision
If the system processes and correlates data from multiple sources to determine conditions, then the measurement precision of condition detection is improved, but the data processing time and computational resources increase
Solution Approach 1:
The correlation module applies correlation algorithms to data from multiple devices to determine conditions with high precision. Rather than processing all possible data continuously, the system processes data selectively based on alert triggers and condition requirements, achieving sufficient measurement precision while minimizing unnecessary data processing time and computational resource usage.
Data Source
AI summary
An alert communication server is disclosed, and includes one or more processors, one or more modules of non-transitory computer-readable memory, a correlation module, and a transmission module. The one or more modules of non-transitory computer-readable memory store a set of instructions and are electronically coupled with the one or more processors to implement at least one instruction of the set of instructions. The correlation module is electronically connected to receive a first set of data from a first device and a second set of data from a second device. The correlation module is configured to apply a correlation algorithm to the first set of data and the second set of data to determine one or more conditions. The transmission module is configured to communicate with one or more of the first device and the second device based upon the one or more conditions determined by the correlation module.


