Panoramic Monitoring Feedback Control for Synchronous Anomaly Response
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Solution Overview
Problem
Existing environmental monitoring systems struggle to respond synchronously to sudden anomalies and eliminate abnormal situations due to site conditions and accumulated weight effects on monitoring results, making it difficult to control emergencies effectively.
Innovation Solution
A panoramic monitoring and feedback control system that includes a host-system, sub-systems with wide-angle cameras, and external systems with sensor modules and equipment devices, enabling real-time information display, automatic operation signals, and split-screen troubleshooting videos to quickly address abnormal situations.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Speed
If conventional environmental monitoring methods are used, then monitoring data is collected, but the system cannot respond synchronously to sudden anomalies and eliminate abnormal situations effectively
Solution Approach 1:
The patent implements a feedback control mechanism where the host system receives sensing signals from sub-systems, determines abnormal situations, and sends operation signals back to control equipment. This closed-loop feedback enables synchronous response to anomalies by continuously monitoring environmental parameters and immediately actuating control measures when thresholds are exceeded, thereby improving both response speed and effectiveness in eliminating abnormal situations.
2Ease of operation
If remote control of host-system is used, then monitoring is performed, but abnormal situations are difficult to eliminate due to accumulated weight effects on monitoring results
Solution Approach 1:
The patent divides the monitoring system into multiple independent sub-systems, each equipped with sensors and processing capabilities. Each sub-system independently monitors specific environmental parameters and can autonomously detect abnormal situations. This segmentation eliminates the accumulated weight effect of centralized processing by distributing decision-making authority, allowing each sub-system to respond independently to local anomalies, thereby improving the reliability of abnormal situation elimination while maintaining remote monitoring ease.
3Loss of information
If conventional monitoring systems are used, then environmental parameters are measured, but real-time information and troubleshooting process are not simultaneously displayed
Solution Approach 1:
The patent merges the environmental parameter display and troubleshooting process video display into a single integrated host system interface. The host system simultaneously receives and processes both sensing signals from sub-systems and video signals from cameras, then displays them together on the same screen. This merging eliminates information loss by providing comprehensive real-time visibility of both operational data and visual troubleshooting processes, while the integration approach keeps system complexity manageable through unified processing architecture.
Data Source
AI summary
A panoramic monitoring and feedback control system and a panoramic monitoring and feedback control method, which are configured to assist monitors to obtain real-time information of a monitored field and eliminate an abnormal situation. The panoramic monitoring and feedback control system includes: a host-system, configured to display real-time information of the monitored field; at least one sub-system, connected to the host-system, including a plurality of wide-angle cameras, configured to receive sensing conditions, operate signals, and automatic operation signals; and at least one external system including sensor modules and equipment devices. The present application uses the host-system to display a diversion screen of the equipment being operated during the abnormal situation, and at the same time, operates the equipment and receives external feedback through multiple control methods, to accurately control the equipment shown by the real-time information of the monitored field and improve an effect of monitoring and feedback control.


