Portable Device Technical Audit With AI Forecasting
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Solution Overview
Problem
Current technical audits in companies and facilities require extensive knowledge and experience, leading to delayed operations and increased costs due to the need for multiple visits and manual documentation, which can be inefficient and prone to errors.
Innovation Solution
A portable electronic device connected to a controller with AI-powered incident forecasting, enabling real-time geolocation, file forwarding, and video calls with centralized experts to streamline inspections, prioritize high-risk areas, and reduce the need for physical visits through AI-driven predictive analytics.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Measurement precision
If manual inspection and documentation methods are used, then inspection depth and quality can be maintained, but inspection time and costs increase significantly
Solution Approach 1:
The patent replaces manual mechanical inspection processes with automated electronic devices equipped with sensors, cameras, and data collection tools. These devices automatically capture and transmit inspection data, eliminating the need for manual documentation while maintaining inspection quality through systematic data collection protocols.
Solution Approach 2:
The patent creates digital copies of physical inspection data through electronic devices that capture images, videos, and sensor readings. These digital copies are transmitted to centralized servers for storage and analysis, replacing physical documentation while enabling faster access and processing of inspection results.
2Measurement precision
If inspectors with deep knowledge and experience are deployed, then inspection accuracy improves, but operational costs and deployment time increase
Solution Approach 1:
The patent enables inspection systems to perform self-diagnosis and automated analysis through embedded sensors, algorithms, and AI-powered detection mechanisms. The electronic devices automatically identify defects and anomalies without requiring constant human intervention, reducing dependency on highly skilled inspectors while maintaining accuracy.
Solution Approach 2:
The patent introduces centralized servers and cloud-based platforms as intermediaries between field inspection devices and expert analysts. These intermediaries pre-process and filter inspection data, presenting only relevant findings to experts, thereby reducing the time and cost associated with deploying highly knowledgeable inspectors for every inspection.
3Reliability
If multiple visits are conducted to ensure proper inspection, then inspection completeness improves, but productivity decreases and costs increase
Solution Approach 1:
The patent implements continuous monitoring and data collection through electronic devices that capture inspection data in real-time across multiple locations. The systematic progression through predefined inspection routes ensures completeness without requiring repeated visits, as all necessary data is collected during the initial inspection pass.
Solution Approach 2:
The patent incorporates immediate feedback mechanisms where inspection data is transmitted in real-time to centralized systems that validate completeness and quality. Any missing or insufficient data is identified and flagged for immediate correction during the same inspection visit, eliminating the need for follow-up visits to ensure completeness.
4Reliability
If prior inspection is conducted before start-up, then operational risks are reduced, but project timeline and costs increase
Solution Approach 1:
The patent implements preliminary inspection protocols using electronic devices that systematically check all critical parameters before equipment start-up. The automated data collection and analysis capabilities enable comprehensive pre-startup verification without extending the project timeline, as the electronic inspection process is faster and more efficient than traditional manual methods.
Data Source
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AI summary
Technical audit procedure comprising: - at least a portable electronic device (1) with a camera and a data input peripheral, remotely connected to - at least a controller (2); - a first step of initiating the intervention, - the continuous geolocation of the device (1) and its forwarding to the controller (2); - a forwarding connection of text, video, or photo files with the geolocation of the place where the file was created; and - a video call connection between the device (1) and a centralized expert.