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Drainage Pipeline Endoscopic Inspection and Management System

Drainage Pipeline Endoscopic Inspection and Management System

The drainage pipe network endoscopic inspection management system achieves closed-loop management of the entire pipe network inspection process through a digital solution. It consists of three parts: a pipe network data acquisition app, pipe network inspection internal processing software, and an inspection data analysis system. This system solves problems such as reliance on paper documents, data inconsistencies, low efficiency of offline transmission, and untimely feedback of inspection results in traditional inspection methods. Through digitized field data acquisition, standardized information flow, intelligent data analysis, and visualized results, the system achieves real-time transmission and intelligent analysis of inspection data, ultimately outputting refined and standardized engineering inspection results, significantly improving inspection efficiency and management level.
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  • iconDigitalization of field data collection

  • iconInformation flow standardization

  • iconIntelligent data analysis

  • iconResults visualization

System Features

  • Historical testing comparison

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    Building upon the traditional GIS system's hierarchical management based solely on pipeline type, the system innovatively adds a detection data layer. By using color coding to intuitively distinguish detection records from different years, it achieves visualized control over detection status and time dimensions. This effectively supports the precise planning of detection tasks and eliminates problems such as missed detections and duplicate detections.

  • Intelligent task planning

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    The system achieves a high degree of intelligence and flexibility in the task deployment process. It supports preset standard detection areas (such as residential areas and roads) while allowing users to freely draw custom detection ranges. It automatically generates total task mileage data based on the defined areas, providing managers with a visual basis for real-time progress tracking. This feature significantly improves the accuracy and efficiency of task allocation.

  • Intelligent information auto-fill

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    The system has achieved an intelligent upgrade in digital information recording. Through deep integration with the GIS system, it can automatically fill in basic information such as pipe number, well number, pipe diameter, and pipe material into the video watermark. At the same time, it supports flexible configuration of the required fields of the data collection APP, effectively avoiding information omissions during field inspections. It can also achieve convenient operation with no or less input through preset options, significantly improving the accuracy and efficiency of data collection.

  • Intelligent data collection

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    The system achieves full compatibility and simplified operation in terms of device access. It supports seamless access to a variety of mainstream inspection equipment such as QV, CCTV, and all-terrain equipment, covering almost all common inspection scenarios. It also enables one-click video acquisition through a single APP, completely solving the cumbersome operation of frequently switching between different APPs in traditional inspection and significantly improving the work efficiency of field inspection.

  • Multi-device data synchronization

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    The system has achieved a revolutionary breakthrough in multi-terminal data synchronization, completely changing the inefficient traditional offline data transmission model. Through a real-time cloud synchronization mechanism, the system ensures that testing data is updated instantly on PCs, mobile devices, and management terminals. Any authorized personnel can access the latest testing data at any time, significantly improving emergency response efficiency in the event of unforeseen circumstances. This function not only eliminates the tedious process of searching for documents by both internal and external personnel, but also enables cross-departmental and cross-level sharing of testing resources.

  • Real-time multi-person collaboration

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    The system completely overcomes the limitations of traditional standalone software in enabling multi-person collaborative work. Through a networked architecture, it achieves real-time sharing of inspection data, supporting multiple staff members to handle the same project simultaneously. This not only significantly improves the execution efficiency of medium to large-scale inspection projects but also optimizes the allocation of human resources. This innovative feature means that project progress is no longer limited by the capabilities of a single individual but can be rapidly advanced through teamwork.

  • Multi-system linkage

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    The system achieves deep integration across multiple systems, establishing an efficient data sharing mechanism through interfaces with a series of business systems such as work order systems, inspection systems, maintenance systems, and repair and testing systems. This innovative design not only significantly improves the cross-system utilization rate of testing data but also achieves a rapid response loop for problem discovery and resolution by reducing intermediate transmission links, maximizing the value of testing data.

  • Multidimensional intelligent statistics

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    The system achieves full intelligence in its statistical functions. It can automatically calculate personnel workload for performance evaluation, analyze the distribution of defects within the management scope, calculate the inspection completion mileage for any time period, identify duplicate inspections, and provide precise decision support for the planning and management of inspection tasks through multi-dimensional data analysis. This function significantly improves management efficiency and the scientific nature of decision-making.

  • Application scenarios

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