Management Cloud Platform for Production Line Security Zoning
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Solution Overview
Problem
Existing Industrial Internet of Things (IIoT) systems for production lines operate independently, making it difficult to manage personnel and devices effectively across multiple production lines, leading to inefficiencies and potential interference with normal production activities, and there is a lack of effective early warning measures to prevent such interference.
Innovation Solution
A management cloud platform integrates multiple IIoT subsystems to determine security control regions by analyzing production information, constructing control parameter databases, and generating security monitoring and management parameters to issue warnings and adjust production schedules, ensuring safe and efficient operations.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If independent IIoT systems are used for each production line, then each production line can operate autonomously, but it becomes difficult to manage personnel and devices across multiple production lines effectively
Solution Approach 1:
The patent merges multiple independent IIoT systems into a unified management cloud platform that integrates personnel information, device status, and production data across all production lines. This consolidation enables centralized management while maintaining the operational autonomy of individual production lines, resolving the contradiction between cross-line management capability and system integration complexity.
Solution Approach 2:
The management cloud platform is designed as a universal system that serves multiple production lines simultaneously. It provides unified functions for personnel management, device monitoring, and production coordination across different production lines, enabling one system to handle multiple purposes and reducing the need for separate management systems for each production line.
2Reliability
If real-time monitoring is implemented on all devices and personnel, then security risks can be detected early, but normal production activities may be interfered with
Solution Approach 1:
The patent applies local quality by differentiating monitoring intensity based on risk levels. High-risk areas and critical personnel receive enhanced monitoring and control measures, while low-risk areas maintain normal operational procedures. This selective approach ensures security effectiveness where needed without unnecessarily interfering with normal production activities throughout the entire facility.
Solution Approach 2:
The system dynamically adjusts monitoring parameters and control measures based on real-time risk assessment. When security risks are detected, the system automatically enhances monitoring and triggers alerts without disrupting ongoing production. The monitoring intensity adapts to current conditions, maintaining productivity during normal operations while ensuring reliability when security threats arise.
3Loss of information
If multiple production lines operate independently, then production flexibility is maintained, but data utilization across production lines is ineffective
Solution Approach 1:
The management cloud platform serves as an intermediary layer between individual production lines and central management. It collects data from each production line, processes and analyzes the information, then distributes relevant insights back to production lines and management. This intermediary structure enables effective data utilization across production lines without requiring direct complex interconnections between each production line's systems.
Data Source
AI summary
Disclosed is a system and method for determining a security control region of production lines based on management cloud platform. The system comprises a management cloud platform and at least one subsystem. The management cloud platform is configured to: obtain production information; determine a processing feature; construct a control parameter database; retrieve a historical processing feature, and determine a security control level and a key control subject; send each processing procedure and the security control level and the key control subject corresponding to the processing procedure, and determine the security control region; obtain the security control region; determine a security monitoring parameter; generate a security monitoring instruction and send the security monitoring instruction; obtain security monitoring information; generate a security management parameter, and send the security management parameter; generate a security management instruction; send the security management instruction; and obtain an execution result, and adjust the security monitoring parameter.


